Crystallography Open Database

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1567782 CIFC20 H18 O2P 1 21/c 117.416; 7.3263; 11.8242
90; 93.273; 90
1506.25Wang, Wang; Cai, Yanyao; Guo, Renyu; Brown, M. Kevin
Synthesis of Complex Bicyclic Scaffolds by Intermolecular Photosensitized Dearomative Cycloadditions of Activated Alkenes and Naphthalenes
Chemical Science, 2022
1567783 CIFC20 H18 O2P 1 21/n 19.6874; 14.9785; 11.1842
90; 113.606; 90
1487.1Wang, Wang; Cai, Yanyao; Guo, Renyu; Brown, M. Kevin
Synthesis of Complex Bicyclic Scaffolds by Intermolecular Photosensitized Dearomative Cycloadditions of Activated Alkenes and Naphthalenes
Chemical Science, 2022
1567784 CIFC21 H27 Cl N O1.5P 1 21 116.0511; 7.76; 17.0992
90; 117.512; 90
1888.96Wang, Wang; Cai, Yanyao; Guo, Renyu; Brown, M. Kevin
Synthesis of Complex Bicyclic Scaffolds by Intermolecular Photosensitized Dearomative Cycloadditions of Activated Alkenes and Naphthalenes
Chemical Science, 2022
1567785 CIFC62 H62 Mn N8 O26P -17.5317; 14.206; 14.536
107.443; 92.616; 94.61
1475Duan, Xinde; Xia, Minqi; Hu, Xixi; Yang, Lijun; Zheng, Hegen
Interfacing MnO and FeCo alloy inside N-doped carbon hierarchical porous nanospheres derived from metal-organic framework boosts high-performance oxygen reduction for Zn–air batteries
Nanoscale, 2022
1567786 CIFC15 H20 O2P 21 21 215.60939; 10.26643; 22.2551
90; 90; 90
1281.64Tian, Peilin; Ye, Wenkang; Zhang, Xiayan; Tong, Yi; Qian, Pei-Yuan; Tong, Rongbiao
Ten-step asymmetric total syntheses of potent antibiotics anthracimycin and anthracimycin B.
Chemical science, 2022, 13, 12776-12781
1567787 CIFC25 H32 O4P 21 21 215.5419; 15.3789; 25.7913
90; 90; 90
2198.15Tian, Peilin; Ye, Wenkang; Zhang, Xiayan; Tong, Yi; Qian, Pei-Yuan; Tong, Rongbiao
Ten-step asymmetric total syntheses of potent antibiotics anthracimycin and anthracimycin B.
Chemical science, 2022, 13, 12776-12781
1567788 CIFC16 H16 F6 Mn N4 O6 S2P -18.8255; 11.6235; 12.598
73.4523; 75.8056; 72.4567
1163.1Verspeek, Dennis; Ahrens, Sebastian; Spannenberg, Anke; Wen, Xiaodong; Yang, Yong; Li, Yong-Wang; Junge, Kathrin; Beller, Matthias
Manganese N,N,N-pincer complex-catalyzed epoxidation of unactivated aliphatic olefins
Catalysis Science & Technology, 2022, 12, 7341-7348
1567789 CIFC14 H15 F6 Mn N3 O7 S2P 1 2/n 18.9946; 9.9209; 12.2244
90; 105.646; 90
1050.42Verspeek, Dennis; Ahrens, Sebastian; Spannenberg, Anke; Wen, Xiaodong; Yang, Yong; Li, Yong-Wang; Junge, Kathrin; Beller, Matthias
Manganese N,N,N-pincer complex-catalyzed epoxidation of unactivated aliphatic olefins
Catalysis Science & Technology, 2022, 12, 7341-7348
1567790 CIFC10 H9 F7 N2 O3P -18.4543; 8.9233; 9.8274
111.704; 98.837; 101.362
654.12Deolka, Shubham; Govindarajan, Ramadoss; Vasylevskyi, Serhii; Roy, Michael C.; Khusnutdinova, Julia R.; Khaskin, Eugene
Ligand-free nickel catalyzed perfluoroalkylation of arenes and heteroarenes.
Chemical science, 2022, 13, 12971-12979
1567791 CIFC9 H9 F5 N2 O3P -17.9519; 8.3267; 9.1611
82.449; 72.42; 77.031
562.18Deolka, Shubham; Govindarajan, Ramadoss; Vasylevskyi, Serhii; Roy, Michael C.; Khusnutdinova, Julia R.; Khaskin, Eugene
Ligand-free nickel catalyzed perfluoroalkylation of arenes and heteroarenes.
Chemical science, 2022, 13, 12971-12979
1567792 CIFC11 H8 F5 NP 1 21/n 17.832; 6.1313; 22.493
90; 93.678; 90
1077.9Deolka, Shubham; Govindarajan, Ramadoss; Vasylevskyi, Serhii; Roy, Michael C.; Khusnutdinova, Julia R.; Khaskin, Eugene
Ligand-free nickel catalyzed perfluoroalkylation of arenes and heteroarenes.
Chemical science, 2022, 13, 12971-12979
1567793 CIFC20 H18 F5 N O5I 1 2 120.3374; 7.1756; 14.0098
90; 92.999; 90
2041.69Deolka, Shubham; Govindarajan, Ramadoss; Vasylevskyi, Serhii; Roy, Michael C.; Khusnutdinova, Julia R.; Khaskin, Eugene
Ligand-free nickel catalyzed perfluoroalkylation of arenes and heteroarenes.
Chemical science, 2022, 13, 12971-12979
1567794 CIFC21.5 H25 Cu N6.75 O7P 1 21/c 114.2321; 13.2378; 14.6287
90; 93.153; 90
2751.9Zeng, Heng; Xie, Xiao-Jing; Wang, Ying; Luo, Dong; Wei, Rong-Jia; Lu, Weigang; Li, Dan
Spatial disposition of square-planar mononuclear nodes in metal-organic frameworks for C<sub>2</sub>H<sub>2</sub>/CO<sub>2</sub> separation.
Chemical science, 2022, 13, 12876-12882
1567795 CIFC32 H51 Cl2 F3 Ir2 N2 O5 P2 SP 1 21/c 114.7885; 17.1958; 15.9928
90; 96.222; 90
4043Do, Van K.; Alfonso Vargas, Nicolas; Chavez, Anthony J.; Zhang, Long; Cherepakhin, Valeriy; Lu, Zhiyao; Currier, Robert P.; Dub, Pavel A.; Gordon, John C.; Williams, Travis J.
Pressurized formic acid dehydrogenation: an entropic spring replaces hydrogen compression cost
Catalysis Science & Technology, 2022, 12, 7182-7189
1567796 CIFC14.96 H11.84 Cl0.02 N2 O5.98 Pt0.02 S0.98P 1 21/c 114.2283; 12.4939; 8.2937
90; 98.4225; 90
1458.44Maciulis, Nicholas A.; Wasim, Eman; Rezvani, Fereshteh; Pink, Maren; Sterbinsky, George E.; Caulton, Kenneth G.; Tait, Steven L.
Carboxylic acid ligand substituent impacts hydrosilylation activity of platinum single atom catalysts on ceria
Catalysis Science & Technology, 2022, 12, 7349-7360
1567797 CIFC75 H61P -118.1166; 19.1083; 19.7848
114.665; 95.802; 90.221
6184.2Xu, Xiushang; Serra, Gianluca; Villa, Andrea; Muñoz-Mármol, Rafael; Vasylevskyi, Serhii; Gadea, Marcos; Lucotti, Andrea; Lin, Zesen; Boj, Pedro G.; Kabe, Ryota; Tommasini, Matteo; Diaz-Garcia, Maria Angeles; Scotognella, Francesco; Paternò, Giuseppe Maria; Narita, Akimitsu
Synthesis of Zigzag- and Fjord-Edged Nanographene with Dual Amplified Spontaneous Emission
Chemical Science, 2022
1567798 CIFC124 H180 Au21 P4 S12P -115.416; 15.9669; 19.0841
111.495; 112.712; 93.327
3921.4Li, Qinzhen; Yang, Sha; Chai, Jinsong; Zhang, Hui; Zhu, Manzhou
Insights into mechanisms of diphosphine-mediated controlled surface construction on Au nanoclusters
Nanoscale, 2022
1567799 CIFC172 H240 Au25 B P4 S16C 1 2/c 149.7888; 17.4433; 31.9121
90; 129.254; 90
21461.1Li, Qinzhen; Yang, Sha; Chai, Jinsong; Zhang, Hui; Zhu, Manzhou
Insights into mechanisms of diphosphine-mediated controlled surface construction on Au nanoclusters
Nanoscale, 2022
1567800 CIFC120 H186 Au22 Cl4 Fe P2 S14P -115.8416; 17.5548; 29.6424
80.682; 82.909; 63.942
7295Li, Qinzhen; Yang, Sha; Chai, Jinsong; Zhang, Hui; Zhu, Manzhou
Insights into mechanisms of diphosphine-mediated controlled surface construction on Au nanoclusters
Nanoscale, 2022
1567801 CIFC148 H196 Au21 B P4 S12P -117.4996; 21.3266; 26.0965
69.41; 83.622; 74.583
8787.5Li, Qinzhen; Yang, Sha; Chai, Jinsong; Zhang, Hui; Zhu, Manzhou
Insights into mechanisms of diphosphine-mediated controlled surface construction on Au nanoclusters
Nanoscale, 2022
1567802 CIFC112 H182 Au22 Cl2 P2 S14P c a 2133.411; 16.475; 54.849
90; 90; 90
30191.4Li, Qinzhen; Yang, Sha; Chai, Jinsong; Zhang, Hui; Zhu, Manzhou
Insights into mechanisms of diphosphine-mediated controlled surface construction on Au nanoclusters
Nanoscale, 2022
1567803 CIFC34 H58 F6 N6 O6 S2P 1 21/c 19.4465; 20.428; 11.45
90; 112.936; 90
2034.9Nayak, Mithilesh Kumar; Sarkar, Pallavi; Elvers, Benedict J.; Mehta, Sakshi; Zhang, Fangyuan; Chrysochos, Nicolas; Krummenacher, Ivo; Vijayakanth, Thangavel; Narayanan, Ramakirushnan Suriya; Dolai, Ramapada; Roy, Biswarup; Malik, Vishal; Rawat, Hemant; Mondal, Abhishake; Boomishankar, Ramamoorthy; Pati, Swapan K.; Braunschweig, Holger; Schulzke, Carola; Ravat, Prince; Jana, Anukul
A bis-NHC–CAAC dimer derived dicationic diradical
Chemical Science, 2022, 13, 12533-12539
1567804 CIFC32 H54 N6P -18.4164; 9.9098; 10.3761
101.12; 111.201; 93.802
782.89Nayak, Mithilesh Kumar; Sarkar, Pallavi; Elvers, Benedict J.; Mehta, Sakshi; Zhang, Fangyuan; Chrysochos, Nicolas; Krummenacher, Ivo; Vijayakanth, Thangavel; Narayanan, Ramakirushnan Suriya; Dolai, Ramapada; Roy, Biswarup; Malik, Vishal; Rawat, Hemant; Mondal, Abhishake; Boomishankar, Ramamoorthy; Pati, Swapan K.; Braunschweig, Holger; Schulzke, Carola; Ravat, Prince; Jana, Anukul
A bis-NHC–CAAC dimer derived dicationic diradical
Chemical Science, 2022, 13, 12533-12539
1567805 CIFC35 H56 F9 N6 O9 S3I 1 2/a 111.2729; 20.2466; 19.5699
90; 92.742; 90
4461.5Nayak, Mithilesh Kumar; Sarkar, Pallavi; Elvers, Benedict J.; Mehta, Sakshi; Zhang, Fangyuan; Chrysochos, Nicolas; Krummenacher, Ivo; Vijayakanth, Thangavel; Narayanan, Ramakirushnan Suriya; Dolai, Ramapada; Roy, Biswarup; Malik, Vishal; Rawat, Hemant; Mondal, Abhishake; Boomishankar, Ramamoorthy; Pati, Swapan K.; Braunschweig, Holger; Schulzke, Carola; Ravat, Prince; Jana, Anukul
A bis-NHC–CAAC dimer derived dicationic diradical
Chemical Science, 2022, 13, 12533-12539
1567806 CIFC36 H56 F12 N6 O12 S4P 1 21/n 112.7027; 13.3266; 14.3241
90; 93.044; 90
2421.42Nayak, Mithilesh Kumar; Sarkar, Pallavi; Elvers, Benedict J.; Mehta, Sakshi; Zhang, Fangyuan; Chrysochos, Nicolas; Krummenacher, Ivo; Vijayakanth, Thangavel; Narayanan, Ramakirushnan Suriya; Dolai, Ramapada; Roy, Biswarup; Malik, Vishal; Rawat, Hemant; Mondal, Abhishake; Boomishankar, Ramamoorthy; Pati, Swapan K.; Braunschweig, Holger; Schulzke, Carola; Ravat, Prince; Jana, Anukul
A bis-NHC–CAAC dimer derived dicationic diradical
Chemical Science, 2022, 13, 12533-12539
1567807 CIFC32 H56 N6P 1 21/n 17.9568; 18.1921; 11.2323
90; 107.697; 90
1548.94Nayak, Mithilesh Kumar; Sarkar, Pallavi; Elvers, Benedict J.; Mehta, Sakshi; Zhang, Fangyuan; Chrysochos, Nicolas; Krummenacher, Ivo; Vijayakanth, Thangavel; Narayanan, Ramakirushnan Suriya; Dolai, Ramapada; Roy, Biswarup; Malik, Vishal; Rawat, Hemant; Mondal, Abhishake; Boomishankar, Ramamoorthy; Pati, Swapan K.; Braunschweig, Holger; Schulzke, Carola; Ravat, Prince; Jana, Anukul
A bis-NHC–CAAC dimer derived dicationic diradical
Chemical Science, 2022, 13, 12533-12539
1567808 CIFC42 H72 F6 N6 O8 S2P 1 21/c 110.2368; 11.7148; 20.4531
90; 92.856; 90
2449.73Nayak, Mithilesh Kumar; Sarkar, Pallavi; Elvers, Benedict J.; Mehta, Sakshi; Zhang, Fangyuan; Chrysochos, Nicolas; Krummenacher, Ivo; Vijayakanth, Thangavel; Narayanan, Ramakirushnan Suriya; Dolai, Ramapada; Roy, Biswarup; Malik, Vishal; Rawat, Hemant; Mondal, Abhishake; Boomishankar, Ramamoorthy; Pati, Swapan K.; Braunschweig, Holger; Schulzke, Carola; Ravat, Prince; Jana, Anukul
A bis-NHC–CAAC dimer derived dicationic diradical
Chemical Science, 2022, 13, 12533-12539
1567809 CIFC33 H56 N6P -18.4; 10.3658; 20.0368
78.183; 79.823; 82.783
1673.56Nayak, Mithilesh Kumar; Sarkar, Pallavi; Elvers, Benedict J.; Mehta, Sakshi; Zhang, Fangyuan; Chrysochos, Nicolas; Krummenacher, Ivo; Vijayakanth, Thangavel; Narayanan, Ramakirushnan Suriya; Dolai, Ramapada; Roy, Biswarup; Malik, Vishal; Rawat, Hemant; Mondal, Abhishake; Boomishankar, Ramamoorthy; Pati, Swapan K.; Braunschweig, Holger; Schulzke, Carola; Ravat, Prince; Jana, Anukul
A bis-NHC–CAAC dimer derived dicationic diradical
Chemical Science, 2022, 13, 12533-12539
1567810 CIFC33 H58 N6P 1 21/c 111.5251; 28.9745; 11.6064
90; 119.306; 90
3379.7Nayak, Mithilesh Kumar; Sarkar, Pallavi; Elvers, Benedict J.; Mehta, Sakshi; Zhang, Fangyuan; Chrysochos, Nicolas; Krummenacher, Ivo; Vijayakanth, Thangavel; Narayanan, Ramakirushnan Suriya; Dolai, Ramapada; Roy, Biswarup; Malik, Vishal; Rawat, Hemant; Mondal, Abhishake; Boomishankar, Ramamoorthy; Pati, Swapan K.; Braunschweig, Holger; Schulzke, Carola; Ravat, Prince; Jana, Anukul
A bis-NHC–CAAC dimer derived dicationic diradical
Chemical Science, 2022, 13, 12533-12539
1567811 CIFC38 H64 F6 N6 O6 S2P 1 21/c 19.1161; 46.1464; 11.2799
90; 105.642; 90
4569.4Nayak, Mithilesh Kumar; Sarkar, Pallavi; Elvers, Benedict J.; Mehta, Sakshi; Zhang, Fangyuan; Chrysochos, Nicolas; Krummenacher, Ivo; Vijayakanth, Thangavel; Narayanan, Ramakirushnan Suriya; Dolai, Ramapada; Roy, Biswarup; Malik, Vishal; Rawat, Hemant; Mondal, Abhishake; Boomishankar, Ramamoorthy; Pati, Swapan K.; Braunschweig, Holger; Schulzke, Carola; Ravat, Prince; Jana, Anukul
A bis-NHC–CAAC dimer derived dicationic diradical
Chemical Science, 2022, 13, 12533-12539
1567812 CIFC35 H60 F6 N6 O6 S2P 1 21/c 116.4086; 22.9375; 11.3222
90; 97.679; 90
4223.1Nayak, Mithilesh Kumar; Sarkar, Pallavi; Elvers, Benedict J.; Mehta, Sakshi; Zhang, Fangyuan; Chrysochos, Nicolas; Krummenacher, Ivo; Vijayakanth, Thangavel; Narayanan, Ramakirushnan Suriya; Dolai, Ramapada; Roy, Biswarup; Malik, Vishal; Rawat, Hemant; Mondal, Abhishake; Boomishankar, Ramamoorthy; Pati, Swapan K.; Braunschweig, Holger; Schulzke, Carola; Ravat, Prince; Jana, Anukul
A bis-NHC–CAAC dimer derived dicationic diradical
Chemical Science, 2022, 13, 12533-12539
1567813 CIFC40 H82 F12 N6 O22 S4P -111.1305; 11.429; 13.722
92.322; 99.653; 113.256
1570.03Nayak, Mithilesh Kumar; Sarkar, Pallavi; Elvers, Benedict J.; Mehta, Sakshi; Zhang, Fangyuan; Chrysochos, Nicolas; Krummenacher, Ivo; Vijayakanth, Thangavel; Narayanan, Ramakirushnan Suriya; Dolai, Ramapada; Roy, Biswarup; Malik, Vishal; Rawat, Hemant; Mondal, Abhishake; Boomishankar, Ramamoorthy; Pati, Swapan K.; Braunschweig, Holger; Schulzke, Carola; Ravat, Prince; Jana, Anukul
A bis-NHC–CAAC dimer derived dicationic diradical
Chemical Science, 2022, 13, 12533-12539
1567814 CIFC41 H65 F9 N7 O9 S3P 1 21/n 113.7065; 11.8374; 32.3229
90; 91.669; 90
5242.1Nayak, Mithilesh Kumar; Sarkar, Pallavi; Elvers, Benedict J.; Mehta, Sakshi; Zhang, Fangyuan; Chrysochos, Nicolas; Krummenacher, Ivo; Vijayakanth, Thangavel; Narayanan, Ramakirushnan Suriya; Dolai, Ramapada; Roy, Biswarup; Malik, Vishal; Rawat, Hemant; Mondal, Abhishake; Boomishankar, Ramamoorthy; Pati, Swapan K.; Braunschweig, Holger; Schulzke, Carola; Ravat, Prince; Jana, Anukul
A bis-NHC–CAAC dimer derived dicationic diradical
Chemical Science, 2022, 13, 12533-12539
1567815 CIFC42 H68 F6 N8 O6 S2P n a 2127.5528; 8.4292; 22.0477
90; 90; 90
5120.5Nayak, Mithilesh Kumar; Sarkar, Pallavi; Elvers, Benedict J.; Mehta, Sakshi; Zhang, Fangyuan; Chrysochos, Nicolas; Krummenacher, Ivo; Vijayakanth, Thangavel; Narayanan, Ramakirushnan Suriya; Dolai, Ramapada; Roy, Biswarup; Malik, Vishal; Rawat, Hemant; Mondal, Abhishake; Boomishankar, Ramamoorthy; Pati, Swapan K.; Braunschweig, Holger; Schulzke, Carola; Ravat, Prince; Jana, Anukul
A bis-NHC–CAAC dimer derived dicationic diradical
Chemical Science, 2022, 13, 12533-12539
1567816 CIFC37 H59 F12 N6 O12.5 S4P 1 21/c 114.521; 11.291; 30.821
90; 93.8; 90
5042.2Nayak, Mithilesh Kumar; Sarkar, Pallavi; Elvers, Benedict J.; Mehta, Sakshi; Zhang, Fangyuan; Chrysochos, Nicolas; Krummenacher, Ivo; Vijayakanth, Thangavel; Narayanan, Ramakirushnan Suriya; Dolai, Ramapada; Roy, Biswarup; Malik, Vishal; Rawat, Hemant; Mondal, Abhishake; Boomishankar, Ramamoorthy; Pati, Swapan K.; Braunschweig, Holger; Schulzke, Carola; Ravat, Prince; Jana, Anukul
A bis-NHC–CAAC dimer derived dicationic diradical
Chemical Science, 2022, 13, 12533-12539
1567817 CIFC25 H19 N OP 1 21 18.5649; 10.4376; 9.9968
90; 98.418; 90
884.06Gu, Xiaodong; Liu, Kexin; Yang, Limin; Xie, Chengyi; Li, Mingliang; Wang, Jun (Joelle)
Nickel-catalyzed enantioselective α-heteroarylation of ketones via C–F bond activation to construct all-carbon quaternary stereocenters
Chemical Science, 2022, 13, 12498-12502
1567818 CIFC30 H32 Mn N2 S4P -111.3144; 11.4859; 12.22
88.259; 81.481; 65.401
1427.1Elsby, Matthew R.; Oh, Changjin; Son, Mina; Kim, Scott Y. H.; Baik, Mu-Hyun; Baker, R. Tom
Spin-state crossover in photo-catalyzed nitrile dihydroboration via Mn-thiolate cooperation
Chemical Science, 2022, 13, 12550-12559
1567819 CIFC44 H47 Mn N4 O S4P 1 21/n 113.8594; 19.0914; 16.2268
90; 103; 90
4183.5Elsby, Matthew R.; Oh, Changjin; Son, Mina; Kim, Scott Y. H.; Baik, Mu-Hyun; Baker, R. Tom
Spin-state crossover in photo-catalyzed nitrile dihydroboration via Mn-thiolate cooperation
Chemical Science, 2022, 13, 12550-12559
1567820 CIFC10 H11 Au Br N3P -16.0635; 9.6309; 11.032
101.765; 104.967; 97.601
597.54Rit, Arnab; Illam, Praseetha Mathoor; Tiwari, Chandra Shekhar
Towards New Coordination Modes of 1,2,3-Triazolylidene: Controlled by the Nature of 1st Metalation in a Heteroditopic Bis-NHC Ligand
Chemical Science, 2022
1567821 CIFC25 H31 Au Br Cl Ir N5P 1 21/c 19.6523; 25.471; 11.1422
90; 104.835; 90
2648Rit, Arnab; Illam, Praseetha Mathoor; Tiwari, Chandra Shekhar
Towards New Coordination Modes of 1,2,3-Triazolylidene: Controlled by the Nature of 1st Metalation in a Heteroditopic Bis-NHC Ligand
Chemical Science, 2022
1567822 CIFC20 H23 Br3 N6 PdC 1 2/c 119.5; 11.2281; 23.8483
90; 96.656; 90
5186.3Rit, Arnab; Illam, Praseetha Mathoor; Tiwari, Chandra Shekhar
Towards New Coordination Modes of 1,2,3-Triazolylidene: Controlled by the Nature of 1st Metalation in a Heteroditopic Bis-NHC Ligand
Chemical Science, 2022
1567823 CIFC25 H27 Br4 N7 Pd2P 1 21/n 113.8366; 12.6469; 17.6415
90; 103.832; 90
2997.56Rit, Arnab; Illam, Praseetha Mathoor; Tiwari, Chandra Shekhar
Towards New Coordination Modes of 1,2,3-Triazolylidene: Controlled by the Nature of 1st Metalation in a Heteroditopic Bis-NHC Ligand
Chemical Science, 2022
1567824 CIFC15 H16 Br2 N4 PdP 1 21/c 117.706; 6.2505; 15.812
90; 98.771; 90
1729.5Rit, Arnab; Illam, Praseetha Mathoor; Tiwari, Chandra Shekhar
Towards New Coordination Modes of 1,2,3-Triazolylidene: Controlled by the Nature of 1st Metalation in a Heteroditopic Bis-NHC Ligand
Chemical Science, 2022
1567825 CIFC15 H21 Br2 N5 OP 1 21/n 17.7483; 23.2239; 10.301
90; 102.974; 90
1806.3Rit, Arnab; Illam, Praseetha Mathoor; Tiwari, Chandra Shekhar
Towards New Coordination Modes of 1,2,3-Triazolylidene: Controlled by the Nature of 1st Metalation in a Heteroditopic Bis-NHC Ligand
Chemical Science, 2022
1567826 CIFC20 H22 Au Br2.59 Cl0.41 N6 PdP -18.2856; 12.0023; 12.6741
83.517; 83.226; 88.824
1243.56Rit, Arnab; Illam, Praseetha Mathoor; Tiwari, Chandra Shekhar
Towards New Coordination Modes of 1,2,3-Triazolylidene: Controlled by the Nature of 1st Metalation in a Heteroditopic Bis-NHC Ligand
Chemical Science, 2022
1567827 CIFC30 H36 Br3 Ir N6 PdC 1 2/c 125.915; 20.09; 15.4825
90; 115.662; 90
7265.6Rit, Arnab; Illam, Praseetha Mathoor; Tiwari, Chandra Shekhar
Towards New Coordination Modes of 1,2,3-Triazolylidene: Controlled by the Nature of 1st Metalation in a Heteroditopic Bis-NHC Ligand
Chemical Science, 2022
1567828 CIFC50 H66 I4 Ir2 N10 OP -110.1579; 12.7784; 22.2614
95.693; 98.958; 94.414
2827.66Rit, Arnab; Illam, Praseetha Mathoor; Tiwari, Chandra Shekhar
Towards New Coordination Modes of 1,2,3-Triazolylidene: Controlled by the Nature of 1st Metalation in a Heteroditopic Bis-NHC Ligand
Chemical Science, 2022
1567829 CIFC26 H35 N O3 S2 SiP 3118.235; 18.235; 7.1321
90; 90; 120
2053.8Sharma, Himangshu; Mondal, Joyanta Mr.; Ghosh, Ananyo K. Mr.; Pal, Ritesh Ranjan Dr.; Goswami, Rajib Kumar
Total Synthesis of Antibacterial Polyketide Natural Product Thailandamide Lactone
Chemical Science, 2022
1567830 CIFC28 H30 O4P 41 21 29.6794; 9.6794; 49.548
90; 90; 90
4642.2Sharma, Himangshu; Mondal, Joyanta Mr.; Ghosh, Ananyo K. Mr.; Pal, Ritesh Ranjan Dr.; Goswami, Rajib Kumar
Total Synthesis of Antibacterial Polyketide Natural Product Thailandamide Lactone
Chemical Science, 2022
1567831 CIFC27 H18P 1 21/c 14.8045; 15.5425; 23.249
90; 92.476; 90
1734.5Zheng, Xiaoxin; Han, Quanxiang; Lin, Qinglian; Li, Cuicui; Jiang, Jinke; Guo, Qing; Ye, Xin; Yuan, Wang Zhang; Liu, Yang; Tao, Xutang
A processable, scalable, and stable full-color ultralong afterglow system based on heteroatom-free hydrocarbon doped polymers.
Materials horizons, 2023, 10, 197-208
1567832 CIFC28 H33 N2 OP -16.2055; 11.319; 32.886
89.884; 85.258; 89.848
2302He, Xin; Ma, Pengchen; Tang, Yuhai; Li, Jing; Shen, Shenyu; Lear, Martin J.; Houk, K. N.; Xu, Silong
Phosphine-catalyzed activation of cyclopropenones: a versatile C<sub>3</sub> synthon for (3+2) annulations with unsaturated electrophiles.
Chemical science, 2022, 13, 12769-12775
1567833 CIFC25 H19 N O2R -3 :H32.848; 32.848; 10.842
90; 90; 120
10131He, Xin; Ma, Pengchen; Tang, Yuhai; Li, Jing; Shen, Shenyu; Lear, Martin J.; Houk, K. N.; Xu, Silong
Phosphine-catalyzed activation of cyclopropenones: a versatile C<sub>3</sub> synthon for (3+2) annulations with unsaturated electrophiles.
Chemical science, 2022, 13, 12769-12775
1567834 CIFC24 H19 N O2P 1 21/c 19.4143; 14.69; 13.927
90; 106.73; 90
1844.5He, Xin; Ma, Pengchen; Tang, Yuhai; Li, Jing; Shen, Shenyu; Lear, Martin J.; Houk, K. N.; Xu, Silong
Phosphine-catalyzed activation of cyclopropenones: a versatile C<sub>3</sub> synthon for (3+2) annulations with unsaturated electrophiles.
Chemical science, 2022, 13, 12769-12775
1567835 CIFC21 H27 N3 O6P -19.497; 14.1349; 16.2663
77.872; 89.269; 87.51
2132.8Cai, Bao-Gui; Bao, Ye-Peng; Pei, Chao; Li, Qian; Li, Lei; Koenigs, Rene M.; Xuan, Jun
Photochemical synthesis of 1,2,4-triazoles <i>via</i> addition reaction of triplet intermediates to diazoalkanes and azomethine ylide intermediates.
Chemical science, 2022, 13, 13141-13146
1567836 CIFC124 H56 Lu3 N5 NiC 1 2/m 125.1131; 15.0135; 19.6714
90; 93.887; 90
7399.8Bao, Lipiao; Yu, Pengwei; Hu, Shuaifeng; Tian, Xinyue; Shen, Wangqiang; Yu, Pengyuan; Guo, Kun; Xie, Yun-Peng; Lu, Xing
Steering Lu3N cluster in C76-78 cages: Cluster configuration dominated by cage transformation
Nanoscale, 2022
1567837 CIFC124 H53 Lu3 N5 Ni S2C 1 2/m 126.44; 16.808; 17.861
90; 107.97; 90
7550Bao, Lipiao; Yu, Pengwei; Hu, Shuaifeng; Tian, Xinyue; Shen, Wangqiang; Yu, Pengyuan; Guo, Kun; Xie, Yun-Peng; Lu, Xing
Steering Lu3N cluster in C76-78 cages: Cluster configuration dominated by cage transformation
Nanoscale, 2022
1567838 CIFC123 H53 Lu3 N5 NiC 1 2 125.313; 15.0309; 19.673
90; 95.136; 90
7455.1Bao, Lipiao; Yu, Pengwei; Hu, Shuaifeng; Tian, Xinyue; Shen, Wangqiang; Yu, Pengyuan; Guo, Kun; Xie, Yun-Peng; Lu, Xing
Steering Lu3N cluster in C76-78 cages: Cluster configuration dominated by cage transformation
Nanoscale, 2022
1567839 CIFC8 H16 Co2 O20 P4P 1 21/n 16.8699; 19.185; 8.392
90; 105.318; 90
1066.76Yan, Chong-Chong; Tang, Si-Fu
Rational design of heterostructural heterometallic phosphonates as highly efficient electrocatalysts for overall water splitting under alkaline conditions
Catalysis Science & Technology, 2022, 12, 7417-7426
1567840 CIFC8 H40 Ni3 O30 P4P 1 21/c 110.6044; 10.3561; 13.9206
90; 97.323; 90
1516.29Yan, Chong-Chong; Tang, Si-Fu
Rational design of heterostructural heterometallic phosphonates as highly efficient electrocatalysts for overall water splitting under alkaline conditions
Catalysis Science & Technology, 2022, 12, 7417-7426
1567841 CIFC34 H48 F6 N6 O3P -113.5304; 14.4783; 19.2467
86.952; 73.821; 84.391
3602.39Tilly, David P.; Žabka, Matej; Vitorica-Yrzebal, Inigo; Sparkes, Hazel Anne; Pridmore, Natalie E.; Clayden, Jonathan
Supramolecular interactions between ethylene-bridged oligoureas: nanorings and chains formed by cooperative positive allostery
Chemical Science, 2022
1567842 CIFC31 H42 F6 N6 O3P -114.5044; 14.9547; 17.2099
101.789; 111.249; 97.465
3319.6Tilly, David P.; Žabka, Matej; Vitorica-Yrzebal, Inigo; Sparkes, Hazel Anne; Pridmore, Natalie E.; Clayden, Jonathan
Supramolecular interactions between ethylene-bridged oligoureas: nanorings and chains formed by cooperative positive allostery
Chemical Science, 2022
1567843 CIFC22 H24 F6 N4 O2R -3 :H31.7595; 31.7595; 24.6991
90; 90; 120
21575.4Tilly, David P.; Žabka, Matej; Vitorica-Yrzebal, Inigo; Sparkes, Hazel Anne; Pridmore, Natalie E.; Clayden, Jonathan
Supramolecular interactions between ethylene-bridged oligoureas: nanorings and chains formed by cooperative positive allostery
Chemical Science, 2022
1567844 CIFC32 H36 F6 N6 O3P -114.5061; 15.7206; 17.2781
92.442; 113.7; 112.853
3231.16Tilly, David P.; Žabka, Matej; Vitorica-Yrzebal, Inigo; Sparkes, Hazel Anne; Pridmore, Natalie E.; Clayden, Jonathan
Supramolecular interactions between ethylene-bridged oligoureas: nanorings and chains formed by cooperative positive allostery
Chemical Science, 2022
1567845 CIFC31 H27 Cl3 F12 N6 O4P -111.948; 12.5972; 12.9273
80.719; 76.811; 73.555
1807.12Tilly, David P.; Žabka, Matej; Vitorica-Yrzebal, Inigo; Sparkes, Hazel Anne; Pridmore, Natalie E.; Clayden, Jonathan
Supramolecular interactions between ethylene-bridged oligoureas: nanorings and chains formed by cooperative positive allostery
Chemical Science, 2022
1567846 CIFC34 H32 F6 N6 O3C 1 2/c 118.98; 20.3627; 16.4981
90; 92.891; 90
6368.1Tilly, David P.; Žabka, Matej; Vitorica-Yrzebal, Inigo; Sparkes, Hazel Anne; Pridmore, Natalie E.; Clayden, Jonathan
Supramolecular interactions between ethylene-bridged oligoureas: nanorings and chains formed by cooperative positive allostery
Chemical Science, 2022
1567847 CIFC29 H32 F12 N6 O3P -110.953; 12.2425; 12.9211
69.381; 84.162; 85.716
1611.81Tilly, David P.; Žabka, Matej; Vitorica-Yrzebal, Inigo; Sparkes, Hazel Anne; Pridmore, Natalie E.; Clayden, Jonathan
Supramolecular interactions between ethylene-bridged oligoureas: nanorings and chains formed by cooperative positive allostery
Chemical Science, 2022
1567848 CIFC29 H32 Cl3 F3 N6 O3P 1 21/n 111.9677; 20.0581; 14.2211
90; 111.923; 90
3166.9Tilly, David P.; Žabka, Matej; Vitorica-Yrzebal, Inigo; Sparkes, Hazel Anne; Pridmore, Natalie E.; Clayden, Jonathan
Supramolecular interactions between ethylene-bridged oligoureas: nanorings and chains formed by cooperative positive allostery
Chemical Science, 2022
1567849 CIFC23 H26 F6 N4 O2P 1 21/n 118.0463; 21.9267; 18.6546
90; 105.361; 90
7117.8Tilly, David P.; Žabka, Matej; Vitorica-Yrzebal, Inigo; Sparkes, Hazel Anne; Pridmore, Natalie E.; Clayden, Jonathan
Supramolecular interactions between ethylene-bridged oligoureas: nanorings and chains formed by cooperative positive allostery
Chemical Science, 2022
1567850 CIFC43 H48 N10 O5P 1 21/c 112.8818; 7.7413; 40.5948
90; 98.052; 90
4008.28Tilly, David P.; Žabka, Matej; Vitorica-Yrzebal, Inigo; Sparkes, Hazel Anne; Pridmore, Natalie E.; Clayden, Jonathan
Supramolecular interactions between ethylene-bridged oligoureas: nanorings and chains formed by cooperative positive allostery
Chemical Science, 2022
1567851 CIFC54 H56 F12 N12 O8P -111.6563; 15.0421; 17.5808
71.522; 75.149; 81.278
2817.6Tilly, David P.; Žabka, Matej; Vitorica-Yrzebal, Inigo; Sparkes, Hazel Anne; Pridmore, Natalie E.; Clayden, Jonathan
Supramolecular interactions between ethylene-bridged oligoureas: nanorings and chains formed by cooperative positive allostery
Chemical Science, 2022
1567852 CIFC29 H30 F6 N6 O3P 1 21/c 110.273; 19.1589; 15.2648
90; 101.038; 90
2948.83Tilly, David P.; Žabka, Matej; Vitorica-Yrzebal, Inigo; Sparkes, Hazel Anne; Pridmore, Natalie E.; Clayden, Jonathan
Supramolecular interactions between ethylene-bridged oligoureas: nanorings and chains formed by cooperative positive allostery
Chemical Science, 2022
1567853 CIFC27 H42 F6 N6 O3P -110.2341; 13.105; 24.026
104.669; 93.989; 99.942
3048.7Tilly, David P.; Žabka, Matej; Vitorica-Yrzebal, Inigo; Sparkes, Hazel Anne; Pridmore, Natalie E.; Clayden, Jonathan
Supramolecular interactions between ethylene-bridged oligoureas: nanorings and chains formed by cooperative positive allostery
Chemical Science, 2022
1567854 CIFC34 H42 F12 N8 O4P 1 21/c 116.746; 15.9603; 22.0769
90; 95.262; 90
5875.7Tilly, David P.; Žabka, Matej; Vitorica-Yrzebal, Inigo; Sparkes, Hazel Anne; Pridmore, Natalie E.; Clayden, Jonathan
Supramolecular interactions between ethylene-bridged oligoureas: nanorings and chains formed by cooperative positive allostery
Chemical Science, 2022
1567855 CIFC28 H34 N6 O3P 1 21/n 15.9061; 28.6533; 15.5357
90; 92.006; 90
2627.48Tilly, David P.; Žabka, Matej; Vitorica-Yrzebal, Inigo; Sparkes, Hazel Anne; Pridmore, Natalie E.; Clayden, Jonathan
Supramolecular interactions between ethylene-bridged oligoureas: nanorings and chains formed by cooperative positive allostery
Chemical Science, 2022
1567856 CIFC40 H38 F12 N8 O6P b c n13.8062; 16.5341; 18.0269
90; 90; 90
4115.1Tilly, David P.; Žabka, Matej; Vitorica-Yrzebal, Inigo; Sparkes, Hazel Anne; Pridmore, Natalie E.; Clayden, Jonathan
Supramolecular interactions between ethylene-bridged oligoureas: nanorings and chains formed by cooperative positive allostery
Chemical Science, 2022
1567857 CIFC17 H22 F6 N4 O2P 1 21/n 111.6426; 11.0107; 16.803
90; 108.437; 90
2043.47Tilly, David P.; Žabka, Matej; Vitorica-Yrzebal, Inigo; Sparkes, Hazel Anne; Pridmore, Natalie E.; Clayden, Jonathan
Supramolecular interactions between ethylene-bridged oligoureas: nanorings and chains formed by cooperative positive allostery
Chemical Science, 2022
1567858 CIFC20 H20 F6 N4 O2P 1 21/c 113.7401; 14.0361; 11.5499
90; 113.558; 90
2041.8Tilly, David P.; Žabka, Matej; Vitorica-Yrzebal, Inigo; Sparkes, Hazel Anne; Pridmore, Natalie E.; Clayden, Jonathan
Supramolecular interactions between ethylene-bridged oligoureas: nanorings and chains formed by cooperative positive allostery
Chemical Science, 2022
1567859 CIFC25.22 H23 F6 N4.11 O2R -3 :H31.6255; 31.6255; 12.2942
90; 90; 120
10648.9Tilly, David P.; Žabka, Matej; Vitorica-Yrzebal, Inigo; Sparkes, Hazel Anne; Pridmore, Natalie E.; Clayden, Jonathan
Supramolecular interactions between ethylene-bridged oligoureas: nanorings and chains formed by cooperative positive allostery
Chemical Science, 2022
1567860 CIFC42 H47.5 F6 N6 O5P -19.9573; 19.5693; 20.9138
84.902; 89.962; 87.554
4055.4Tilly, David P.; Žabka, Matej; Vitorica-Yrzebal, Inigo; Sparkes, Hazel Anne; Pridmore, Natalie E.; Clayden, Jonathan
Supramolecular interactions between ethylene-bridged oligoureas: nanorings and chains formed by cooperative positive allostery
Chemical Science, 2022
1567861 CIFC31 H37 N3 O6P 19.2497; 9.6644; 32.938
90.062; 92.44; 104.738
2844.7Misra, Rajkumar; Netti, Francesca; Koren, Gil; Dan, Yoav; Chakraborty, Priyadarshi; Cohen, Sidney R.; Shimon, Linda J. W.; Beck, Roy; Adler-Abramovich, Lihi
An atomistic view of rigid crystalline supramolecular polymers derived from short amphiphilic, α,β hybrid peptide
Polymer Chemistry, 2022, 13, 6223-6228
1567862 CIF
Paper
C23 H18 Fe2 S3P 1 21/c 111.0149; 14.0459; 13.3983
90; 109.205; 90
1957.5Sánchez-García, Jessica J.; Flores-Alamo, Marcos; Nuñez-Gordillo, Amairany; Klimova, Elena I.
4,5-Diferrocenyl-1,2-dithiole-3-thione
IUCrData, 2022, 7, x221011
1567863 CIF
Paper
C28 H22 F N3 O SP 1 21/c 110.7859; 14.5638; 14.9956
90; 97.144; 90
2337.3Archana, Sreeramapura D.; Nagma Banu, Holalagudu A.; Kalluraya, Balakrishna; Yathirajan, Hemmige S.; Balerao, Rishik; Butcher, Ray J.
5-(4-Fluorophenyl)-1-[4-(4-methylphenyl)thiazol-2-yl]-3-[4-(prop-2-ynyloxy)phenyl]-4,5-dihydro-1<i>H</i>-pyrazole
IUCrData, 2022, 7, x221003
1567864 CIFC45 H41 N5 O6P -19.7228; 12.0523; 16.1605
74.238; 88.581; 86.213
1818.49Xiao, Xiao; Kurganskii, Ivan; Maity, Partha; Zhao, Jianzhang; Jiang, Xiao; Mohammed, Omar F.; Fedin, Matvey V.
Long-lived Charge-Separated State of Spiro Compact Electron Donor-Acceptor Dyads Based on Rhodamine and Naphthalenediimide Chromophores
Chemical Science, 2022
1567865 CIFF6 H8 Hf N2P c a 2113.3902; 7.685; 11.6731
90; 90; 90
1201.21Kavun, V. Ya.; Gerasimenko, A. V.; Sergienko, V. I.; Davidovich, R. L.; Antokhina, T. F.
Complex Ions in Ammonium Hexafluorohafnate: Crystal Structure and Internal Dynamics
Russian Journal of Coordination Chemistry, 2002, 28, 630-635
1567866 CIFF6 Sn ZrP 1 2/n 16.6119; 5.2503; 6.9929
90; 114.239; 90
221.35Gerasimenko, A. V.; Merkulov, E. B.; Tkachenko, I. A.; Kavun, V. Ya.; Goncharuk, V. K.; Sergienko, V. I.
Synthesis and Structure of Tin(II) Hexafluorozirconate
Russian Journal of Coordination Chemistry, 2002, 28, 839-842
1567867 CIFC28 H37 Cl4 PP 1 21/n 18.2809; 22.5668; 16.3964
90; 103.932; 90
2973.9Morvan, Jennifer; Vermersch, François; Lorkowski, Jan; Talcik, Jakub; Vives, Thomas; Roisnel, Thierry; Crévisy, Christophe; Vanthuyne, Nicolas; Bertrand, Guy; Jazzar, Rodolphe; Mauduit, Marc
Cyclic(alkyl)(amino)carbene ruthenium complexes for Z-stereoselective (asymmetric) olefin metathesis
Catalysis Science & Technology, 2023, 13, 381-388
1567868 CIFC31 H43 Cl2 N O RuP 1 21/n 18.8604; 17.881; 18.306
90; 95.479; 90
2887Morvan, Jennifer; Vermersch, François; Lorkowski, Jan; Talcik, Jakub; Vives, Thomas; Roisnel, Thierry; Crévisy, Christophe; Vanthuyne, Nicolas; Bertrand, Guy; Jazzar, Rodolphe; Mauduit, Marc
Cyclic(alkyl)(amino)carbene ruthenium complexes for Z-stereoselective (asymmetric) olefin metathesis
Catalysis Science & Technology, 2023, 13, 381-388
1567869 CIFC34 H49 Cl4 N O RuP -110.4383; 12.2309; 13.85
99.897; 93.661; 99.297
1711.4Morvan, Jennifer; Vermersch, François; Lorkowski, Jan; Talcik, Jakub; Vives, Thomas; Roisnel, Thierry; Crévisy, Christophe; Vanthuyne, Nicolas; Bertrand, Guy; Jazzar, Rodolphe; Mauduit, Marc
Cyclic(alkyl)(amino)carbene ruthenium complexes for Z-stereoselective (asymmetric) olefin metathesis
Catalysis Science & Technology, 2023, 13, 381-388
1567870 CIFC36 H45 Cl2 N O Ru S2P 1 21/c 115.6535; 12.8229; 17.9202
90; 100.381; 90
3538.1Morvan, Jennifer; Vermersch, François; Lorkowski, Jan; Talcik, Jakub; Vives, Thomas; Roisnel, Thierry; Crévisy, Christophe; Vanthuyne, Nicolas; Bertrand, Guy; Jazzar, Rodolphe; Mauduit, Marc
Cyclic(alkyl)(amino)carbene ruthenium complexes for Z-stereoselective (asymmetric) olefin metathesis
Catalysis Science & Technology, 2023, 13, 381-388
1567871 CIFC35 H44 Cl2 N2 O3 RuP 21 21 218.7486; 19.3141; 43.739
90; 90; 90
7390.6Morvan, Jennifer; Vermersch, François; Lorkowski, Jan; Talcik, Jakub; Vives, Thomas; Roisnel, Thierry; Crévisy, Christophe; Vanthuyne, Nicolas; Bertrand, Guy; Jazzar, Rodolphe; Mauduit, Marc
Cyclic(alkyl)(amino)carbene ruthenium complexes for Z-stereoselective (asymmetric) olefin metathesis
Catalysis Science & Technology, 2023, 13, 381-388
1567872 CIFC33 H40 Cl2 N2 O3 RuP 1 21 117.3665; 11.5707; 17.4342
90; 115.407; 90
3164.4Morvan, Jennifer; Vermersch, François; Lorkowski, Jan; Talcik, Jakub; Vives, Thomas; Roisnel, Thierry; Crévisy, Christophe; Vanthuyne, Nicolas; Bertrand, Guy; Jazzar, Rodolphe; Mauduit, Marc
Cyclic(alkyl)(amino)carbene ruthenium complexes for Z-stereoselective (asymmetric) olefin metathesis
Catalysis Science & Technology, 2023, 13, 381-388
1567873 CIFC18 H25 Cl N2 OP 1 21/c 16.0121; 24.3678; 11.421
90; 94.695; 90
1667.58McMillan, Angus E.; Wu, Wilson W. X.; Nichols, Paula L.; Wanner, Benedikt M.; Bode, Jeffrey W.
A Vending Machine for Drug-like Molecules - Automated Synthesis of Virtual Screening Hits
Chemical Science, 2022
1567874 CIFC13 H14 F3 N O3P 21 21 215.36257; 8.48172; 27.61854
90; 90; 90
1256.2McMillan, Angus E.; Wu, Wilson W. X.; Nichols, Paula L.; Wanner, Benedikt M.; Bode, Jeffrey W.
A Vending Machine for Drug-like Molecules - Automated Synthesis of Virtual Screening Hits
Chemical Science, 2022
1567875 CIFC22 H27 Cl F6 N2 O5P -19.125; 10.278; 13.8974
77.831; 85.183; 67.565
1177.66McMillan, Angus E.; Wu, Wilson W. X.; Nichols, Paula L.; Wanner, Benedikt M.; Bode, Jeffrey W.
A Vending Machine for Drug-like Molecules - Automated Synthesis of Virtual Screening Hits
Chemical Science, 2022
1567876 CIFC20 H26 Cl F3 N2 O3P 1 21 110.5188; 8.8474; 11.0858
90; 95.456; 90
1027.02McMillan, Angus E.; Wu, Wilson W. X.; Nichols, Paula L.; Wanner, Benedikt M.; Bode, Jeffrey W.
A Vending Machine for Drug-like Molecules - Automated Synthesis of Virtual Screening Hits
Chemical Science, 2022
1567877 CIFC52 H52 Ni P4P -110.507; 13.045; 16.585
81.696; 80.885; 84.254
2214Haibach, Michael C.; Ickes, Andrew R.; Tcyrulnikov, Sergei; Shekhar, Shashank; Monfette, Sebastien; Swiatowiec, Rafal; Kotecki, Brian J.; Wang, Jason; Wall, Amanda L.; Henry, Rodger F.; Hansen, Eric C.
Enabling Suzuki-Miyaura coupling of Lewis-basic arylboronic esters with a nonprecious metal catalyst.
Chemical science, 2022, 13, 12906-12912
1567878 CIFC26 H26 Cl2 Ni P2P 1 21/n 19.345; 15.097; 9.749
90; 113.171; 90
1264.5Haibach, Michael C.; Ickes, Andrew R.; Tcyrulnikov, Sergei; Shekhar, Shashank; Monfette, Sebastien; Swiatowiec, Rafal; Kotecki, Brian J.; Wang, Jason; Wall, Amanda L.; Henry, Rodger F.; Hansen, Eric C.
Enabling Suzuki-Miyaura coupling of Lewis-basic arylboronic esters with a nonprecious metal catalyst.
Chemical science, 2022, 13, 12906-12912
1567879 CIFC9 H29 Br7 N4 Pb2P n m a8.3299; 37.549; 8.4639
90; 90; 90
2647.3Liu, Yi; Xu, Haojie; Liu, Xitao; Han, Shiguo; Guo, Wuqian; Ma, Yu; Fan, Qingshun; Hu, Xinxin; Sun, Zhihua; Luo, Junhua
Room-temperature antiferroelectric in hybrid perovskite enables highly-efficient energy storage at low electric fields
Chemical Science, 2022
1567880 CIFC9 H29 Br7 N4 Pb2I 4/m m m5.9841; 5.9841; 38.4072
90; 90; 90
1375.34Liu, Yi; Xu, Haojie; Liu, Xitao; Han, Shiguo; Guo, Wuqian; Ma, Yu; Fan, Qingshun; Hu, Xinxin; Sun, Zhihua; Luo, Junhua
Room-temperature antiferroelectric in hybrid perovskite enables highly-efficient energy storage at low electric fields
Chemical Science, 2022
1567881 CIF
Paper
C6 H8 Cl N OP 1 21/c 17.161; 26.271; 7.7474
90; 95.495; 90
1450.8Saini, Aarti; Dhanwant, Kisturi; Thirumoorthi, Ramalingam
1-Hydroxy-4-methylpyridinium chloride
IUCrData, 2022, 7, x221023
1567882 CIFC87 H48 O32 U4P -4 3 m20.902; 20.902; 20.902
90; 90; 90
9131.95Hanna, Sylvia L.; Debela, Tekalign T.; Mroz, Austin M.; Syed, Zoha H.; Kirlikovali, Kent O.; Hendon, Christopher H.; Farha, Omar K.
Identification of a metastable uranium metal-organic framework isomer through non-equilibrium synthesis.
Chemical science, 2022, 13, 13032-13039
1567883 CIFC81 H76 B2 Cl2 Dy N7 OP -112.7371; 14.2679; 22.1844
101.261; 93.525; 116.025
3503.18Zhang, Ben; Cheng, Zhijie; Wu, Yingying; Chen, Lei; Jing, Rong; Cai, Xingwei; Jiang, Chunhui; Zhang, Yi-Quan; Yuan, Aihua; Cui, Hui-Hui; Li, Zhao-Yang
Pseudo-mono-axial ligand fields that support high energy barriers in triangular dodecahedral Dy(iii) single-ion magnets.
Chemical science, 2022, 13, 13231-13240
1567884 CIFC86 H78 B2 Cl2 Dy N7 OP -114.0388; 14.481; 21.4518
91.27; 97.279; 111.868
4003.23Zhang, Ben; Cheng, Zhijie; Wu, Yingying; Chen, Lei; Jing, Rong; Cai, Xingwei; Jiang, Chunhui; Zhang, Yi-Quan; Yuan, Aihua; Cui, Hui-Hui; Li, Zhao-Yang
Pseudo-mono-axial ligand fields that support high energy barriers in triangular dodecahedral Dy(iii) single-ion magnets.
Chemical science, 2022, 13, 13231-13240
1567885 CIFC79 H71 B2 Cl Dy N7P 1 21/c 123.6641; 14.1103; 21.3612
90; 96.266; 90
7090.1Zhang, Ben; Cheng, Zhijie; Wu, Yingying; Chen, Lei; Jing, Rong; Cai, Xingwei; Jiang, Chunhui; Zhang, Yi-Quan; Yuan, Aihua; Cui, Hui-Hui; Li, Zhao-Yang
Pseudo-mono-axial ligand fields that support high energy barriers in triangular dodecahedral Dy(iii) single-ion magnets.
Chemical science, 2022, 13, 13231-13240
1567886 CIF
Paper
C26 H30 N6 O4 SP 1 21/n 110.4177; 11.7104; 21.5388
90; 99.964; 90
2588Mohamed-Ezzat, Reham A.; Kariuki, Benson M.; Azzam, Rasha A.
Morpholin-4-ium [5-cyano-6-(4-methylphenyl)-4-(morpholin-4-yl)pyrimidin-2-yl](phenylsulfonyl)amide
IUCrData, 2022, 7, x221033
1567887 CIFC18 H16 N2 O6P 1 21 15.6781; 9.773; 15.2351
90; 92.831; 90
844.4Guo, Jia; Ma, Hao-Ran; Xiong, Wen-Bin; Fan, Luoyi; Zhou, You-Yun; Wong, Henry N. C.; Cui, Jian-Fang
Iridium-Catalyzed Enantioselective Alkynylation and Kinetic Resolution of Alkyl Allylic Alcohols
Chemical Science, 2022
1567888 CIFC32 H45 I8 N4 Pb2C 1 c 112.3353; 12.2206; 32.2371
90; 94.296; 90
4845.92Febriansyah, Benny; Li, Yongxin; Giovanni, David; Salim, Teddy; Hooper, Thomas J. N.; Sim, Ying; Ma, Daphne; Laxmi, Shoba; Lekina, Yulia; Koh, Teck Ming; Shen, Ze Xiang; Pullarkat, Sumod A.; Sum, Tze Chien; Mhaisalkar, Subodh G.; Ager, Joel W.; Mathews, Nripan
Inorganic frameworks of low-dimensional perovskites dictate the performance and stability of mixed-dimensional perovskite solar cells.
Materials horizons, 2023, 10, 536-546
1567889 CIFC16 H28 I6 N4 PbI 4/m10.9954; 10.9954; 25.0526
90; 90; 90
3028.8Febriansyah, Benny; Li, Yongxin; Giovanni, David; Salim, Teddy; Hooper, Thomas J. N.; Sim, Ying; Ma, Daphne; Laxmi, Shoba; Lekina, Yulia; Koh, Teck Ming; Shen, Ze Xiang; Pullarkat, Sumod A.; Sum, Tze Chien; Mhaisalkar, Subodh G.; Ager, Joel W.; Mathews, Nripan
Inorganic frameworks of low-dimensional perovskites dictate the performance and stability of mixed-dimensional perovskite solar cells.
Materials horizons, 2023, 10, 536-546
1567890 CIFC7 H12 I4 N2 PbP 1 21/n 16.3676; 12.592; 20.5523
90; 96.257; 90
1638.08Febriansyah, Benny; Li, Yongxin; Giovanni, David; Salim, Teddy; Hooper, Thomas J. N.; Sim, Ying; Ma, Daphne; Laxmi, Shoba; Lekina, Yulia; Koh, Teck Ming; Shen, Ze Xiang; Pullarkat, Sumod A.; Sum, Tze Chien; Mhaisalkar, Subodh G.; Ager, Joel W.; Mathews, Nripan
Inorganic frameworks of low-dimensional perovskites dictate the performance and stability of mixed-dimensional perovskite solar cells.
Materials horizons, 2023, 10, 536-546
1567891 CIFC8 H12 I3 N PbP n m a8.1205; 9.2677; 19.9344
90; 90; 90
1500.23Febriansyah, Benny; Li, Yongxin; Giovanni, David; Salim, Teddy; Hooper, Thomas J. N.; Sim, Ying; Ma, Daphne; Laxmi, Shoba; Lekina, Yulia; Koh, Teck Ming; Shen, Ze Xiang; Pullarkat, Sumod A.; Sum, Tze Chien; Mhaisalkar, Subodh G.; Ager, Joel W.; Mathews, Nripan
Inorganic frameworks of low-dimensional perovskites dictate the performance and stability of mixed-dimensional perovskite solar cells.
Materials horizons, 2023, 10, 536-546
1567892 CIFC16 H24 I4 N2 O2 PbP -18.703; 8.698; 17.123
92.942; 101.643; 90.504
1267.6Febriansyah, Benny; Li, Yongxin; Giovanni, David; Salim, Teddy; Hooper, Thomas J. N.; Sim, Ying; Ma, Daphne; Laxmi, Shoba; Lekina, Yulia; Koh, Teck Ming; Shen, Ze Xiang; Pullarkat, Sumod A.; Sum, Tze Chien; Mhaisalkar, Subodh G.; Ager, Joel W.; Mathews, Nripan
Inorganic frameworks of low-dimensional perovskites dictate the performance and stability of mixed-dimensional perovskite solar cells.
Materials horizons, 2023, 10, 536-546
1567893 CIFCs H4 Mo Na O6P 21 21 216.379; 8.631; 13.67
90; 90; 90
752.6Makitova, D. D.; Tkachev, V. V.; Chekhlov, A. N.
Crystal Structure of Cesium-Sodium Molybdate Dihydrate
Russian Journal of Coordination Chemistry, 2003, 29, 163-165
1567894 CIFC52 H40 B2 N2C 1 2/c 126.1224; 8.3077; 18.9832
90; 106.476; 90
3950.5Wu, Tien-Lin; Lei, Jian; Hsieh, Chia-Min; Chen, Yi-Kuan; Huang, Pei-Yun; Lai, Po-Ting; Chou, Tsu-Yu; Lin, Wei-Chen; Chen, Wei; Yu, Chi-Hua; Hsu, Liang-Yan; Lin, Hao-Wu; Cheng, Chien-Hong
Substituent engineering of the diboron molecular architecture for a nondoped and ultrathin emitting layer.
Chemical science, 2022, 13, 12996-13005
1567895 CIFC60 H56 B2 N2P 1 21/c 127.7304; 9.0103; 18.61
90; 98.171; 90
4602.7Wu, Tien-Lin; Lei, Jian; Hsieh, Chia-Min; Chen, Yi-Kuan; Huang, Pei-Yun; Lai, Po-Ting; Chou, Tsu-Yu; Lin, Wei-Chen; Chen, Wei; Yu, Chi-Hua; Hsu, Liang-Yan; Lin, Hao-Wu; Cheng, Chien-Hong
Substituent engineering of the diboron molecular architecture for a nondoped and ultrathin emitting layer.
Chemical science, 2022, 13, 12996-13005
1567896 CIFC68 H72 B2 N2P -19.5981; 11.916; 25.0597
85.521; 89.469; 89.876
2857.2Wu, Tien-Lin; Lei, Jian; Hsieh, Chia-Min; Chen, Yi-Kuan; Huang, Pei-Yun; Lai, Po-Ting; Chou, Tsu-Yu; Lin, Wei-Chen; Chen, Wei; Yu, Chi-Hua; Hsu, Liang-Yan; Lin, Hao-Wu; Cheng, Chien-Hong
Substituent engineering of the diboron molecular architecture for a nondoped and ultrathin emitting layer.
Chemical science, 2022, 13, 12996-13005
1567897 CIFC30 H21 N O2P 1 21/n 113.4932; 9.8466; 17.378
90; 102.184; 90
2256.9He, Xinwei; Li, Ruxue; Choy, Pui Ying; Duan, Jiahui; Yin, Zhenzhen; Xu, Keke; Tang, Qiang; Zhong, RongLin; Shang, Yongjia; Kwong, Fuk Yee
An expeditious FeCl3-catalyzed cascade 1,4-conjugate addition/annulation/1,5-H shift sequence for modular access of all-pyrano-moiety-substituted chromenes
Chemical Science, 2022
1567898 CIFC28 H20 F N O2P -19.5747; 9.6132; 12.847
101.581; 95.065; 111.403
1061.5He, Xinwei; Li, Ruxue; Choy, Pui Ying; Duan, Jiahui; Yin, Zhenzhen; Xu, Keke; Tang, Qiang; Zhong, RongLin; Shang, Yongjia; Kwong, Fuk Yee
An expeditious FeCl3-catalyzed cascade 1,4-conjugate addition/annulation/1,5-H shift sequence for modular access of all-pyrano-moiety-substituted chromenes
Chemical Science, 2022
1567899 CIFC30 H23 N O2P -14.8767; 9.4727; 24.3972
89.426; 89.496; 77.542
1100.42He, Xinwei; Li, Ruxue; Choy, Pui Ying; Duan, Jiahui; Yin, Zhenzhen; Xu, Keke; Tang, Qiang; Zhong, RongLin; Shang, Yongjia; Kwong, Fuk Yee
An expeditious FeCl3-catalyzed cascade 1,4-conjugate addition/annulation/1,5-H shift sequence for modular access of all-pyrano-moiety-substituted chromenes
Chemical Science, 2022
1567900 CIFC16 H21 Br Mn N4 O2 PP b c a9.1016; 14.4759; 28.6257
90; 90; 90
3771.5Shabade, Anand B.; Sharma, Dipesh M.; Bajpai, Priyam; Gonnade, Rajesh G.; Vanka, Kumar; Punji, Benudhar
Room temperature chemoselective hydrogenation of C=C, C=O and C=N bonds by well-defined mixed donor Mn(I) pincer catalyst
Chemical Science, 2022
1567901 CIFC132 H56 N4 Ni ThC 1 2/m 125.3169; 15.0051; 19.9071
90; 94.325; 90
7540.8Shen, Yi; Yu, Xiaojuan; Meng, Qingyu; Yao, Yang-Rong; Autschbach, Jochen; Chen, Ning
ThC<sub>2</sub>@C<sub>82</sub> <i>versus</i> Th@C<sub>84</sub>: unexpected formation of triangular thorium carbide cluster inside fullerenes.
Chemical science, 2022, 13, 12980-12986
1567902 CIFC132 H56 N4 Ni ThC 1 2/m 125.261; 14.9722; 19.9879
90; 94.646; 90
7534.8Shen, Yi; Yu, Xiaojuan; Meng, Qingyu; Yao, Yang-Rong; Autschbach, Jochen; Chen, Ning
ThC<sub>2</sub>@C<sub>82</sub> <i>versus</i> Th@C<sub>84</sub>: unexpected formation of triangular thorium carbide cluster inside fullerenes.
Chemical science, 2022, 13, 12980-12986
1567903 CIF
Paper
C63 H49 B2 F30 N4 O2P -110.4436; 17.3961; 17.8229
79.729; 77.923; 83.103
3104.1Butcher, Ray J.; Purdy, Andrew P.
2,5,8,11-Tetramethyl-2,5,8,11-tetraazadodecane-2,11-diium bis[hydroxytris(pentafluorophenyl)borate] benzene 2.5-solvate
IUCrData, 2022, 7, x221049
1567904 CIFC12 H40 F18 Fe4 N6 O2P 1 2/c 116.9178; 13.6023; 12.8848
90; 108.53; 90
2811.3Li, Teng; Lightfoot, Philip
Layered Hybrid iron Fluorides
Crystals, 2022, 12, 1443
1567905 CIFC4 H14 F5 Fe N2 OP 1 21/n 111.4695; 5.8774; 13.609
90; 91.553; 90
917.06Li, Teng; Lightfoot, Philip
Layered Hybrid iron Fluorides
Crystals, 2022, 12, 1443
1567906 CIFC8 H26 F13 Fe3 N4 OC 1 2/c 120.5365; 13.5405; 13.5727
90; 92.588; 90
3770.4Li, Teng; Lightfoot, Philip
Layered Hybrid iron Fluorides
Crystals, 2022, 12, 1443
1567907 CIFC21 H19 Br2 N3 NiC 1 2/c 115.9809; 8.5994; 15.5441
90; 102.998; 90
2081.43Norouziyanlakvan, Somayeh; Ferguson, Jonathan; Richeson, Darrin
Electrocatalytic hydrogen production from neutral water using an aqueous Ni(ii) pincer complex
Catalysis Science & Technology, 2022, 12, 7494-7500
1567908 CIFC64 H64.5 Cl N10 Ni2 O4.75P -113.555; 15.389; 17.007
77.732; 70.231; 81.83
3252.8Nikovskiy, Igor A.; Karnaukh, Kseniia M.; Aleshin, Dmitry Yu.; Spiridonov, Kirill A.; Danshina, Anastasia A.; Nelyubina, Yulia V.; Polezhaev, Alexander V.; Novikov, Valentin V.
Binuclear Nickel Complexes of a New Di(hydroxyphenyl)imidazolate
Magnetochemistry, 2022, 8, 132
1567909 CIFC70 H61 Cl N10 Ni2 O5P -112.2327; 13.0491; 20.7742
72.935; 77.21; 89.982
3084Nikovskiy, Igor A.; Karnaukh, Kseniia M.; Aleshin, Dmitry Yu.; Spiridonov, Kirill A.; Danshina, Anastasia A.; Nelyubina, Yulia V.; Polezhaev, Alexander V.; Novikov, Valentin V.
Binuclear Nickel Complexes of a New Di(hydroxyphenyl)imidazolate
Magnetochemistry, 2022, 8, 132
1567910 CIFAl3.71 K0.842 Na2.868 O16 Si4.29P 6310.002; 10.002; 8.3831
90; 90; 120
726.29Mikhailova, Julia A.; Aksenov, Sergey M.; Pakhomovsky, Yakov A.; Moine, Bertrand N.; Dusséaux, Camille; Vaitieva, Yulia A.; Voronin, Mikhail
Iron in Nepheline: Crystal Chemical Features and Petrological Applications
Minerals, 2022, 12, 1257
1567911 CIFAl3.585 K0.71 Na2.875 O16 Si4.415P 639.9965; 9.9965; 8.3796
90; 90; 120
725.19Mikhailova, Julia A.; Aksenov, Sergey M.; Pakhomovsky, Yakov A.; Moine, Bertrand N.; Dusséaux, Camille; Vaitieva, Yulia A.; Voronin, Mikhail
Iron in Nepheline: Crystal Chemical Features and Petrological Applications
Minerals, 2022, 12, 1257
1567912 CIFAs2 Ba H2 O9 Zn2P 1 21 15.2957; 10.3964; 8.0451
90; 95.262; 90
441.07Gorelova, Liudmila A.; Vereshchagin, Oleg S.; Bocharov, Vladimir N.; Pankin, Dmitrii V.; Đorđević, Tamara
Temperature-Induced Phase Transition in a Feldspar-Related Compound BaZn2As2O8∙H2O
Minerals, 2022, 12, 1262
1567913 CIFAs2 Ba H2 O9 Zn2P 1 21 15.2854; 10.3919; 8.0394
90; 95.445; 90
439.57Gorelova, Liudmila A.; Vereshchagin, Oleg S.; Bocharov, Vladimir N.; Pankin, Dmitrii V.; Đorđević, Tamara
Temperature-Induced Phase Transition in a Feldspar-Related Compound BaZn2As2O8∙H2O
Minerals, 2022, 12, 1262
1567914 CIFAs2 Ba H2 O9 Zn2P 1 21 15.2918; 10.3948; 8.0425
90; 95.309; 90
440.5Gorelova, Liudmila A.; Vereshchagin, Oleg S.; Bocharov, Vladimir N.; Pankin, Dmitrii V.; Đorđević, Tamara
Temperature-Induced Phase Transition in a Feldspar-Related Compound BaZn2As2O8∙H2O
Minerals, 2022, 12, 1262
1567915 CIFAs2 Ba H2 O9 Zn2P 1 21 15.284; 10.3901; 8.0347
90; 95.359; 90
439.19Gorelova, Liudmila A.; Vereshchagin, Oleg S.; Bocharov, Vladimir N.; Pankin, Dmitrii V.; Đorđević, Tamara
Temperature-Induced Phase Transition in a Feldspar-Related Compound BaZn2As2O8∙H2O
Minerals, 2022, 12, 1262
1567916 CIFAs4 Ba2 O16 Zn4P 1 21/c 18.8073; 9.9861; 9.406
90; 91.471; 90
826.99Gorelova, Liudmila A.; Vereshchagin, Oleg S.; Bocharov, Vladimir N.; Pankin, Dmitrii V.; Đorđević, Tamara
Temperature-Induced Phase Transition in a Feldspar-Related Compound BaZn2As2O8∙H2O
Minerals, 2022, 12, 1262
1567917 CIFAs2 Ba H2 O9 Zn2P 1 21 15.2882; 10.394; 8.0395
90; 95.346; 90
439.97Gorelova, Liudmila A.; Vereshchagin, Oleg S.; Bocharov, Vladimir N.; Pankin, Dmitrii V.; Đorđević, Tamara
Temperature-Induced Phase Transition in a Feldspar-Related Compound BaZn2As2O8∙H2O
Minerals, 2022, 12, 1262
1567918 CIFAs2 Ba H2 O9 Zn2P 1 21 15.3037; 10.3959; 8.0483
90; 95.285; 90
441.87Gorelova, Liudmila A.; Vereshchagin, Oleg S.; Bocharov, Vladimir N.; Pankin, Dmitrii V.; Đorđević, Tamara
Temperature-Induced Phase Transition in a Feldspar-Related Compound BaZn2As2O8∙H2O
Minerals, 2022, 12, 1262
1567919 CIFAs2 Ba H2 O9 Zn2P 1 21 15.2986; 10.3948; 8.0462
90; 95.263; 90
441.3Gorelova, Liudmila A.; Vereshchagin, Oleg S.; Bocharov, Vladimir N.; Pankin, Dmitrii V.; Đorđević, Tamara
Temperature-Induced Phase Transition in a Feldspar-Related Compound BaZn2As2O8∙H2O
Minerals, 2022, 12, 1262
1567920 CIFC37 H57 Ce O2P 1 21 110.4698; 12.0899; 13.9747
90; 107.666; 90
1685.48Kynman, Amy E.; Elghanayan, Luca; Desnoyer, Addison; Yang, Yan; Severy, Laurent; Di Giuseppe, Andrea; Tilley, T. Don; Maron, Laurent; Arnold, Polly Louise
Controlled monodefluorination and alkylation of C(sp3)-F Bonds by Lanthanide Photocatalysts: Importance of Metal – Ligand Cooperativity
Chemical Science, 2022
1567921 CIFC36 H52 Ce2 Cl2P 1 21/n 18.5165; 10.4652; 19.4321
90; 92.032; 90
1730.83Kynman, Amy E.; Elghanayan, Luca; Desnoyer, Addison; Yang, Yan; Severy, Laurent; Di Giuseppe, Andrea; Tilley, T. Don; Maron, Laurent; Arnold, Polly Louise
Controlled monodefluorination and alkylation of C(sp3)-F Bonds by Lanthanide Photocatalysts: Importance of Metal – Ligand Cooperativity
Chemical Science, 2022
1567922 CIFC29 H41 Ce OP 1 21/c 116.2557; 8.829; 18.3743
90; 105.141; 90
2545.56Kynman, Amy E.; Elghanayan, Luca; Desnoyer, Addison; Yang, Yan; Severy, Laurent; Di Giuseppe, Andrea; Tilley, T. Don; Maron, Laurent; Arnold, Polly Louise
Controlled monodefluorination and alkylation of C(sp3)-F Bonds by Lanthanide Photocatalysts: Importance of Metal – Ligand Cooperativity
Chemical Science, 2022
1567923 CIFC92 H142 Mg2 N8 O4P -113.9176; 17.014; 19.2571
99.074; 98.357; 91.475
4449.56Kynman, Amy E.; Elghanayan, Luca; Desnoyer, Addison; Yang, Yan; Severy, Laurent; Di Giuseppe, Andrea; Tilley, T. Don; Maron, Laurent; Arnold, Polly Louise
Controlled monodefluorination and alkylation of C(sp3)-F Bonds by Lanthanide Photocatalysts: Importance of Metal – Ligand Cooperativity
Chemical Science, 2022
1567924 CIFC45 H63 La N2 OP 1 21/c 113.3005; 22.0278; 15.6348
90; 113.567; 90
4198.63Kynman, Amy E.; Elghanayan, Luca; Desnoyer, Addison; Yang, Yan; Severy, Laurent; Di Giuseppe, Andrea; Tilley, T. Don; Maron, Laurent; Arnold, Polly Louise
Controlled monodefluorination and alkylation of C(sp3)-F Bonds by Lanthanide Photocatalysts: Importance of Metal – Ligand Cooperativity
Chemical Science, 2022
1567925 CIFC23 H34 Ce F3 O4 SI 1 a 117.5622; 9.4099; 16.2878
90; 108.821; 90
2547.78Kynman, Amy E.; Elghanayan, Luca; Desnoyer, Addison; Yang, Yan; Severy, Laurent; Di Giuseppe, Andrea; Tilley, T. Don; Maron, Laurent; Arnold, Polly Louise
Controlled monodefluorination and alkylation of C(sp3)-F Bonds by Lanthanide Photocatalysts: Importance of Metal – Ligand Cooperativity
Chemical Science, 2022
1567926 CIFC38 H55 Ce N2 OP 1 21/n 110.6673; 17.4641; 19.304
90; 89.907; 90
3596.23Kynman, Amy E.; Elghanayan, Luca; Desnoyer, Addison; Yang, Yan; Severy, Laurent; Di Giuseppe, Andrea; Tilley, T. Don; Maron, Laurent; Arnold, Polly Louise
Controlled monodefluorination and alkylation of C(sp3)-F Bonds by Lanthanide Photocatalysts: Importance of Metal – Ligand Cooperativity
Chemical Science, 2022
1567927 CIFC57.5 H76 Mg2 N4 O2P 1 21/n 113.1713; 18.0503; 23.2076
90; 104.996; 90
5329.61Kynman, Amy E.; Elghanayan, Luca; Desnoyer, Addison; Yang, Yan; Severy, Laurent; Di Giuseppe, Andrea; Tilley, T. Don; Maron, Laurent; Arnold, Polly Louise
Controlled monodefluorination and alkylation of C(sp3)-F Bonds by Lanthanide Photocatalysts: Importance of Metal – Ligand Cooperativity
Chemical Science, 2022
1567928 CIFC45 H63 N2 Nd OP 1 21/c 113.1816; 22.105; 15.5529
90; 112.938; 90
4173.45Kynman, Amy E.; Elghanayan, Luca; Desnoyer, Addison; Yang, Yan; Severy, Laurent; Di Giuseppe, Andrea; Tilley, T. Don; Maron, Laurent; Arnold, Polly Louise
Controlled monodefluorination and alkylation of C(sp3)-F Bonds by Lanthanide Photocatalysts: Importance of Metal – Ligand Cooperativity
Chemical Science, 2022
1567929 CIFC44 H68 Cl2 La2 O2P 1 21/n 111.376; 15.398; 12.4103
90; 91.155; 90
2173.44Kynman, Amy E.; Elghanayan, Luca; Desnoyer, Addison; Yang, Yan; Severy, Laurent; Di Giuseppe, Andrea; Tilley, T. Don; Maron, Laurent; Arnold, Polly Louise
Controlled monodefluorination and alkylation of C(sp3)-F Bonds by Lanthanide Photocatalysts: Importance of Metal – Ligand Cooperativity
Chemical Science, 2022
1567930 CIFC33 H49 Ce OP -19.6336; 10.0767; 16.3047
93.243; 90.396; 107.678
1505.14Kynman, Amy E.; Elghanayan, Luca; Desnoyer, Addison; Yang, Yan; Severy, Laurent; Di Giuseppe, Andrea; Tilley, T. Don; Maron, Laurent; Arnold, Polly Louise
Controlled monodefluorination and alkylation of C(sp3)-F Bonds by Lanthanide Photocatalysts: Importance of Metal – Ligand Cooperativity
Chemical Science, 2022
1567931 CIFC38 H55 N2 O SmP 1 21/n 110.6869; 17.26346; 19.16251
90; 90.4636; 90
3535.23Kynman, Amy E.; Elghanayan, Luca; Desnoyer, Addison; Yang, Yan; Severy, Laurent; Di Giuseppe, Andrea; Tilley, T. Don; Maron, Laurent; Arnold, Polly Louise
Controlled monodefluorination and alkylation of C(sp3)-F Bonds by Lanthanide Photocatalysts: Importance of Metal – Ligand Cooperativity
Chemical Science, 2022
1567932 CIF
Paper
C29 H25 N3 O3 SP 1 21/n 113.9677; 9.7997; 18.4125
90; 92.98; 90
2516.9Archana, Sreeramapura D.; Nagma Banu, Holalagudu A.; Kalluraya, Balakrishna; Yathirajan, Hemmige S.; Balerao, Rishik; Butcher, Ray J.
5-(4-Methoxyphenyl)-1-[4-(4-methoxyphenyl)thiazol-2-yl]-3-[4-(prop-2-ynyloxy)phenyl]-4,5-dihydro-1<i>H</i>-pyrazole
IUCrData, 2022, 7, x221047
1567933 CIF
Paper
C38 H34 Ag N O3 P2C 1 2/c 118.129; 11.0936; 17.9971
90; 104.849; 90
3498.6Malan, Frederick P.; Potgieter, Kariska; Meijboom, Reinout
Bis[(4-methylphenyl)diphenylphosphane-κ<i>P</i>](nitrato-κ^2^<i>O</i>,<i>O</i>')silver(I)
IUCrData, 2022, 7, x221045
1567934 CIFF13 Sb4 TlI -49.634; 9.634; 6.59
90; 90; 90
611.6Udovenko, A. A.
Crystal Structure of Thallium Tridecafluorotetraantimonate(III) TlSb4F13
Russian Journal of Coordination Chemistry, 2003, 29, 310-311
1567935 CIFC3 H12 Cl N2 Na3 O21 Rb6P 63/m c m9.5732; 9.5732; 15.8202
90; 90; 120
1255.62Cheng, Meng; Jin, Wenqi; Yang, Zhihua; Pan, Shilie
Large optical anisotropy-oriented construction of a carbonate-nitrate chloride compound as a potential ultraviolet birefringent material
Chemical Science, 2022
1567936 CIFC55 H112 Fe K2 N3 O13 Si6P -110.7165; 17.976; 19.6298
80.478; 84.376; 84.004
3696.4Sieg, Grégoire; Müller, Igor; Weißer, Kilian; Werncke, Gunnar
Taming the Stilbene Radical Anion
Chemical Science, 2022
1567937 CIFC33 H70 Fe K N2 O6 Si4P 1 21/c 112.1227; 18.3502; 21.0291
90; 104.641; 90
4526.1Sieg, Grégoire; Müller, Igor; Weißer, Kilian; Werncke, Gunnar
Taming the Stilbene Radical Anion
Chemical Science, 2022
1567938 CIFC40 H77 Fe K N2 O6.5 Si4C 1 2/c 137.3486; 13.2014; 27.113
90; 130.575; 90
10153.9Sieg, Grégoire; Müller, Igor; Weißer, Kilian; Werncke, Gunnar
Taming the Stilbene Radical Anion
Chemical Science, 2022
1567939 CIFC98 H213 Fe2 K3 N6 O24 Si12P 1 21/n 116.0976; 15.8981; 26.7651
90; 93.037; 90
6840.1Sieg, Grégoire; Müller, Igor; Weißer, Kilian; Werncke, Gunnar
Taming the Stilbene Radical Anion
Chemical Science, 2022
1567940 CIFIn2 O3P b n a5.432; 5.539; 7.875
90; 90; 90
236.942Yusa, H.; Tsuchiya, T.; Sata, N.; Ohishi, Y.
Rh2O3(II)-type structures in Ga2O3 and In2O3 under high pressure: Experiment and theory :In2O3 at 8.1 GPa
Physical Review B, 2008, 77, 064107-064107
1567941 CIFGa2 O3P b n a4.732; 4.855; 6.942
90; 90; 90
159.48Yusa, H.; Tsuchiya, T.; Sata, N.; Ohishi, Y.
Rh2O3(II)-type structures in Ga2O3 and In2O3 under high pressure: Experiment and theory :Ga2O3 at 52 GPa
Physical Review B, 2008, 77, 064107-064107
1567942 CIFC21 H20 O4P 1 21/n 111.3302; 9.304; 15.2511
90; 92.039; 90
1606.69Hernandez, Jackson; Frontier, Alison
Alkynyl Prins Carbocyclization Cascades for the Synthesis of Linear-Fused Heterocyclic Ring Systems
Chemical Science, 2022
1567943 CIFC22 H22 O3P 1 21/c 111.1121; 14.4482; 11.0686
90; 100.581; 90
1746.85Hernandez, Jackson; Frontier, Alison
Alkynyl Prins Carbocyclization Cascades for the Synthesis of Linear-Fused Heterocyclic Ring Systems
Chemical Science, 2022
1567944 CIFC21 H22 O3P n a 2114.1132; 19.7985; 5.9243
90; 90; 90
1655.37Hernandez, Jackson; Frontier, Alison
Alkynyl Prins Carbocyclization Cascades for the Synthesis of Linear-Fused Heterocyclic Ring Systems
Chemical Science, 2022
1567945 CIFC22 H22 O3P 1 21/n 117.2159; 10.1372; 20.2267
90; 110.546; 90
3305.44Hernandez, Jackson; Frontier, Alison
Alkynyl Prins Carbocyclization Cascades for the Synthesis of Linear-Fused Heterocyclic Ring Systems
Chemical Science, 2022
1567946 CIFC31 H29 N O3P 1 21/n 115.9276; 5.55609; 27.3254
90; 98.7546; 90
2389.99Hernandez, Jackson; Frontier, Alison
Alkynyl Prins Carbocyclization Cascades for the Synthesis of Linear-Fused Heterocyclic Ring Systems
Chemical Science, 2022
1567947 CIFC22 H19 Br O2P -17.1424; 9.2977; 13.9152
93.729; 99.197; 107.703
862.63Hernandez, Jackson; Frontier, Alison
Alkynyl Prins Carbocyclization Cascades for the Synthesis of Linear-Fused Heterocyclic Ring Systems
Chemical Science, 2022
1567948 CIFC27 H27 N O3 SP 1 c 112.1762; 11.5704; 7.9829
90; 94.522; 90
1121.16Hernandez, Jackson; Frontier, Alison
Alkynyl Prins Carbocyclization Cascades for the Synthesis of Linear-Fused Heterocyclic Ring Systems
Chemical Science, 2022
1567949 CIFC65 H84 N2 O2 UP -111.5747; 12.723; 20.5456
80.883; 79.267; 84.493
2928.3Andreychuk, Nicholas R.; Vidjayacoumar, Balamurugan; Price, Jeffrey S.; Kervazo, Sophie; Peeples, Craig A.; Emslie, David J. H.; Vallet, Valérie; Gomes, André S. P.; Réal, Florent; Schreckenbach, Georg; Ayers, Paul W.; Vargas-Baca, Ignacio; Jenkins, Hilary A.; Britten, James F.
Uranium(iv) alkyl cations: synthesis, structures, comparison with thorium(iv) analogues, and the influence of arene-coordination on thermal stability and ethylene polymerization activity
Chemical Science, 2022
1567950 CIFC82 H81 B F20 N2 O Si UP c a 2126.661; 15.845; 19.116
90; 90; 90
8075Andreychuk, Nicholas R.; Vidjayacoumar, Balamurugan; Price, Jeffrey S.; Kervazo, Sophie; Peeples, Craig A.; Emslie, David J. H.; Vallet, Valérie; Gomes, André S. P.; Réal, Florent; Schreckenbach, Georg; Ayers, Paul W.; Vargas-Baca, Ignacio; Jenkins, Hilary A.; Britten, James F.
Uranium(iv) alkyl cations: synthesis, structures, comparison with thorium(iv) analogues, and the influence of arene-coordination on thermal stability and ethylene polymerization activity
Chemical Science, 2022
1567951 CIFC93 H91 B F20 N2 O Si UP -113.916; 17.437; 19.155
95.996; 111.194; 95.687
4262.7Andreychuk, Nicholas R.; Vidjayacoumar, Balamurugan; Price, Jeffrey S.; Kervazo, Sophie; Peeples, Craig A.; Emslie, David J. H.; Vallet, Valérie; Gomes, André S. P.; Réal, Florent; Schreckenbach, Georg; Ayers, Paul W.; Vargas-Baca, Ignacio; Jenkins, Hilary A.; Britten, James F.
Uranium(iv) alkyl cations: synthesis, structures, comparison with thorium(iv) analogues, and the influence of arene-coordination on thermal stability and ethylene polymerization activity
Chemical Science, 2022
1567952 CIFC87 H83 B F22 N2 O Si UP c a 2126.5251; 15.7375; 18.8824
90; 90; 90
7882.2Andreychuk, Nicholas R.; Vidjayacoumar, Balamurugan; Price, Jeffrey S.; Kervazo, Sophie; Peeples, Craig A.; Emslie, David J. H.; Vallet, Valérie; Gomes, André S. P.; Réal, Florent; Schreckenbach, Georg; Ayers, Paul W.; Vargas-Baca, Ignacio; Jenkins, Hilary A.; Britten, James F.
Uranium(iv) alkyl cations: synthesis, structures, comparison with thorium(iv) analogues, and the influence of arene-coordination on thermal stability and ethylene polymerization activity
Chemical Science, 2022
1567953 CIFC45 H77 Br O1.5 P2 PdP -111.8295; 15.3397; 15.9371
115.76; 106.946; 97.999
2369.9Rodstein, Ilja; Kelling, Leif; Löffler, Julian; Scherpf, Thorsten; Sarbajna, Abir; Andrada, Diego M.; Gessner, Viktoria H.
Formation of exceptional monomeric YPhos–PdCl2 complexes with high activities in coupling reactions
Chemical Science, 2022
1567954 CIFC38 H63 Cl5 P2 PdP 21 21 2112.62782; 17.78901; 18.10483
90; 90; 90
4067Rodstein, Ilja; Kelling, Leif; Löffler, Julian; Scherpf, Thorsten; Sarbajna, Abir; Andrada, Diego M.; Gessner, Viktoria H.
Formation of exceptional monomeric YPhos–PdCl2 complexes with high activities in coupling reactions
Chemical Science, 2022
1567955 CIFC33 H61 Cl5 P2 PdP 1 21/c 19.8304; 16.8108; 24.1396
90; 93.664; 90
3981.08Rodstein, Ilja; Kelling, Leif; Löffler, Julian; Scherpf, Thorsten; Sarbajna, Abir; Andrada, Diego M.; Gessner, Viktoria H.
Formation of exceptional monomeric YPhos–PdCl2 complexes with high activities in coupling reactions
Chemical Science, 2022
1567956 CIFC28 H55 Cl3 P2 PdP 1 21/c 117.0122; 14.9105; 18.1097
90; 109.673; 90
4325.6Rodstein, Ilja; Kelling, Leif; Löffler, Julian; Scherpf, Thorsten; Sarbajna, Abir; Andrada, Diego M.; Gessner, Viktoria H.
Formation of exceptional monomeric YPhos–PdCl2 complexes with high activities in coupling reactions
Chemical Science, 2022
1567957 CIFC32 H58 Br2 P2 PdP 1 21/c 110.5375; 17.5174; 18.2109
90; 92.938; 90
3357.12Rodstein, Ilja; Kelling, Leif; Löffler, Julian; Scherpf, Thorsten; Sarbajna, Abir; Andrada, Diego M.; Gessner, Viktoria H.
Formation of exceptional monomeric YPhos–PdCl2 complexes with high activities in coupling reactions
Chemical Science, 2022
1567958 CIFC32 H58 Cl2 P2 PdP 1 21/c 19.844; 16.99413; 19.4275
90; 98.2226; 90
3216.62Rodstein, Ilja; Kelling, Leif; Löffler, Julian; Scherpf, Thorsten; Sarbajna, Abir; Andrada, Diego M.; Gessner, Viktoria H.
Formation of exceptional monomeric YPhos–PdCl2 complexes with high activities in coupling reactions
Chemical Science, 2022
1567959 CIFC32 H58 I2 P2 PdP 1 21/c 110.5861; 17.7689; 18.6428
90; 92.164; 90
3504.27Rodstein, Ilja; Kelling, Leif; Löffler, Julian; Scherpf, Thorsten; Sarbajna, Abir; Andrada, Diego M.; Gessner, Viktoria H.
Formation of exceptional monomeric YPhos–PdCl2 complexes with high activities in coupling reactions
Chemical Science, 2022
1567960 CIFC42 H71 Cl3 O P2 PdP 1 21/c 122.1819; 9.9664; 20.8757
90; 94.071; 90
4603.4Rodstein, Ilja; Kelling, Leif; Löffler, Julian; Scherpf, Thorsten; Sarbajna, Abir; Andrada, Diego M.; Gessner, Viktoria H.
Formation of exceptional monomeric YPhos–PdCl2 complexes with high activities in coupling reactions
Chemical Science, 2022
1567961 CIFC38 H62 Cl2 P2 PdP 1 21/c 112.8401; 15.1413; 20.398
90; 106.091; 90
3810.33Rodstein, Ilja; Kelling, Leif; Löffler, Julian; Scherpf, Thorsten; Sarbajna, Abir; Andrada, Diego M.; Gessner, Viktoria H.
Formation of exceptional monomeric YPhos–PdCl2 complexes with high activities in coupling reactions
Chemical Science, 2022
1567962 CIFC37 H60 Cl2 P2 PdC 1 c 119.1244; 10.5054; 17.9999
90; 94.926; 90
3602.99Rodstein, Ilja; Kelling, Leif; Löffler, Julian; Scherpf, Thorsten; Sarbajna, Abir; Andrada, Diego M.; Gessner, Viktoria H.
Formation of exceptional monomeric YPhos–PdCl2 complexes with high activities in coupling reactions
Chemical Science, 2022
1567963 CIFC154.4 H88.4 Cl1.2 N2P 21 21 2116.6132; 18.7606; 32.1149
90; 90; 90
10009.4Deng, Han; Guo, Zilong; Wang, Yaxin; Li, Ke; Zhou, Qin; Ge, Chang; Xu, Zhanqiang; Sato, Sota; Ma, Xiaonan; Sun, Zhe
Modular Synthesis, Host-Guest Complexation and Solvation-Controlled Relaxation of Nanohoops with Donor-Acceptor Structures
Chemical Science, 2022
1567964 CIFC21 H20 Br PP 1 21/c 110.8668; 9.9356; 17.4186
90; 105.376; 90
1813.3Hui, Jiwen; Wang, Xiaowu; Yao, Xiaoqian; Li, Zhibo
A one-component phosphonium borane Lewis pair serves as a dual initiator and catalyst in the ring-opening alternating copolymerization of anhydrides and epoxides
Polymer Chemistry, 2022, 13, 6551-6563
1567965 CIFC22 H22 Br PP 1 21/c 111.3364; 10.3332; 18.1348
90; 104.699; 90
2054.8Hui, Jiwen; Wang, Xiaowu; Yao, Xiaoqian; Li, Zhibo
A one-component phosphonium borane Lewis pair serves as a dual initiator and catalyst in the ring-opening alternating copolymerization of anhydrides and epoxides
Polymer Chemistry, 2022, 13, 6551-6563
1567966 CIFC17 H19 F2 N OI 1 a 19.6781; 11.1154; 14.2033
90; 103.627; 90
1484.92Yakubov, Shahboz; Stockerl, Willibald J.; Tian, Xianhai; Shahin, Ahmed; Mandigma, Mark John P.; Gschwind, Ruth M.; Barham, Joshua P.
Benzoates as photosensitization catalysts and auxiliaries in efficient, practical, light-powered direct C(sp3)–H fluorinations
Chemical Science, 2022
1567967 CIFC25 H35.086 F0.914 O5P 1 21 110.4636; 6.90652; 16.1323
90; 108.458; 90
1105.86Yakubov, Shahboz; Stockerl, Willibald J.; Tian, Xianhai; Shahin, Ahmed; Mandigma, Mark John P.; Gschwind, Ruth M.; Barham, Joshua P.
Benzoates as photosensitization catalysts and auxiliaries in efficient, practical, light-powered direct C(sp3)–H fluorinations
Chemical Science, 2022
1567968 CIFC22.4 H17 Cl0.6 F6 N2.4 Pt S0.4P 42/n :221.2092; 21.2092; 9.3816
90; 90; 90
4220.1Salthouse, Rebecca J.; Pander, Piotr; Yufit, Dmitry S.; Dias, Fernando B.; Williams, J. A. Gareth
Near-infrared electroluminescence beyond 940 nm in Pt(N^C^N)X complexes: influencing aggregation with the ancillary ligand X
Chemical Science, 2022
1567969 CIFC18 H17 I N4 PtP 1 21/m 110.8783; 6.7723; 12.3368
90; 108.519; 90
861.8Salthouse, Rebecca J.; Pander, Piotr; Yufit, Dmitry S.; Dias, Fernando B.; Williams, J. A. Gareth
Near-infrared electroluminescence beyond 940 nm in Pt(N^C^N)X complexes: influencing aggregation with the ancillary ligand X
Chemical Science, 2022
1567970 CIFC38 H24 N4 O VP 1 21/c 118.9568; 8.083; 19.9282
90; 114.25; 90
2784.1Ranieri, Davide; Santanni, Fabio; Privitera, Alberto; Albino, Andrea; Salvadori, Enrico; Chiesa, Mario; Totti, Federico; Sorace, Lorenzo; Sessoli, Roberta
An exchange coupled <i>meso</i>-<i>meso</i> linked vanadyl porphyrin dimer for quantum information processing.
Chemical science, 2022, 14, 61-69
1567971 CIFC19 H11.5 N2 O0.5 V0.5C c c 220.8648; 27.1717; 11.4881
90; 90; 90
6513Ranieri, Davide; Santanni, Fabio; Privitera, Alberto; Albino, Andrea; Salvadori, Enrico; Chiesa, Mario; Totti, Federico; Sorace, Lorenzo; Sessoli, Roberta
An exchange coupled <i>meso</i>-<i>meso</i> linked vanadyl porphyrin dimer for quantum information processing.
Chemical science, 2022, 14, 61-69
1567972 CIFC97 H46 N8 O2 V2C 1 2/c 129.2955; 11.3883; 22.5512
90; 96.942; 90
7468.5Ranieri, Davide; Santanni, Fabio; Privitera, Alberto; Albino, Andrea; Salvadori, Enrico; Chiesa, Mario; Totti, Federico; Sorace, Lorenzo; Sessoli, Roberta
An exchange coupled <i>meso</i>-<i>meso</i> linked vanadyl porphyrin dimer for quantum information processing.
Chemical science, 2022, 14, 61-69
1567973 CIFC22 H17 Cl2 F O4P 1 21/c 116.218; 10.98; 11.7185
90; 107.344; 90
1991.9Li, Hongyi; Yin, Chang; Liu, Sien; Tu, Hua; Lin, Ping; Chen, Jing; Su, Weiping
Multiple remote C(sp3)–H functionalizations of aliphatic ketones via bimetallic Cu–Pd catalyzed successive dehydrogenation
Chemical Science, 2022
1567974 CIFC6 H10 Br Cu2 N3I 41/a :216.3337; 16.3337; 20.1543
90; 90; 90
5376.96Li, Haipeng; Dou, Zhao-Di; Xiao, Yi; Fan, Guan-Jiang; Pan, Dong-Chen; Hu, Mancheng; Zhai, Quan-Guo
Rational regulation of acetylene adsorption and separation for ultra-microporous copper-1,2,4-triazolate frameworks by halogen hydrogen bonds
Nanoscale, 2022
1567975 CIFC8 H14 Br Cu2 N3I 41/a :216.5753; 16.5753; 19.196
90; 90; 90
5273.9Li, Haipeng; Dou, Zhao-Di; Xiao, Yi; Fan, Guan-Jiang; Pan, Dong-Chen; Hu, Mancheng; Zhai, Quan-Guo
Rational regulation of acetylene adsorption and separation for ultra-microporous copper-1,2,4-triazolate frameworks by halogen hydrogen bonds
Nanoscale, 2022
1567976 CIFC8 H14 Cl Cu2 N3I 41/a :215.9814; 15.9814; 20.7345
90; 90; 90
5295.7Li, Haipeng; Dou, Zhao-Di; Xiao, Yi; Fan, Guan-Jiang; Pan, Dong-Chen; Hu, Mancheng; Zhai, Quan-Guo
Rational regulation of acetylene adsorption and separation for ultra-microporous copper-1,2,4-triazolate frameworks by halogen hydrogen bonds
Nanoscale, 2022
1567977 CIFC6 H8 Cl Cu2 N3I 41/a :216.0496; 16.0496; 20.19
90; 90; 90
5200.7Li, Haipeng; Dou, Zhao-Di; Xiao, Yi; Fan, Guan-Jiang; Pan, Dong-Chen; Hu, Mancheng; Zhai, Quan-Guo
Rational regulation of acetylene adsorption and separation for ultra-microporous copper-1,2,4-triazolate frameworks by halogen hydrogen bonds
Nanoscale, 2022
1567978 CIFC36 H72 P2P -19.2062; 9.321; 25.5135
85.783; 82.881; 60.977
1899.43Zhu, Yun; Stollenz, Michael; Zarcone, Samuel R.; Kharel, Sugam; Joshi, Hemant; Bhuvanesh, Nattamai; Reibenspies, Joseph H.; Gladysz, John A.
Syntheses, homeomorphic and configurational isomerizations, and structures of macrocyclic aliphatic dibridgehead diphosphines; molecules that turn themselves inside out
Chemical Science, 2022
1567979 CIFC42 H84 P2R -3 c :H9.1903; 9.1903; 89.58
90; 90; 120
6552Zhu, Yun; Stollenz, Michael; Zarcone, Samuel R.; Kharel, Sugam; Joshi, Hemant; Bhuvanesh, Nattamai; Reibenspies, Joseph H.; Gladysz, John A.
Syntheses, homeomorphic and configurational isomerizations, and structures of macrocyclic aliphatic dibridgehead diphosphines; molecules that turn themselves inside out
Chemical Science, 2022
1567980 CIFC54 H108 P2C 1 2/c 145.099; 12.6445; 9.399
90; 96.694; 90
5323.3Zhu, Yun; Stollenz, Michael; Zarcone, Samuel R.; Kharel, Sugam; Joshi, Hemant; Bhuvanesh, Nattamai; Reibenspies, Joseph H.; Gladysz, John A.
Syntheses, homeomorphic and configurational isomerizations, and structures of macrocyclic aliphatic dibridgehead diphosphines; molecules that turn themselves inside out
Chemical Science, 2022
1567981 CIFC54 H114 B2 P2P -19.0197; 26.5241; 35.839
81.639; 85.64; 87.03
8451.2Zhu, Yun; Stollenz, Michael; Zarcone, Samuel R.; Kharel, Sugam; Joshi, Hemant; Bhuvanesh, Nattamai; Reibenspies, Joseph H.; Gladysz, John A.
Syntheses, homeomorphic and configurational isomerizations, and structures of macrocyclic aliphatic dibridgehead diphosphines; molecules that turn themselves inside out
Chemical Science, 2022
1567982 CIFC20 H26 O2C 1 2/c 120.2191; 11.5724; 14.8457
90; 92.801; 90
3469.5Huo, Chen-Yu; Zheng, Tian-Lu; Dai, Wei-Hao; Zhang, Zi-Hao; Wang, Jin-Da; Zhu, Dao-Yong; Wang, Shao-Hua; Zhang, Xiao-Ming; Xu, Xue-Tao
InI3-catalyzed polyene cyclization of allenes and its application in the total synthesis of seven abietane-type diterpenoids
Chemical Science, 2022
1567983 CIFC20 H30 O3C 1 2/c 124.7444; 6.096; 22.996
90; 95.293; 90
3453.97Huo, Chen-Yu; Zheng, Tian-Lu; Dai, Wei-Hao; Zhang, Zi-Hao; Wang, Jin-Da; Zhu, Dao-Yong; Wang, Shao-Hua; Zhang, Xiao-Ming; Xu, Xue-Tao
InI3-catalyzed polyene cyclization of allenes and its application in the total synthesis of seven abietane-type diterpenoids
Chemical Science, 2022
1567984 CIFC22 H24P 6117.4778; 17.4778; 9.964
90; 90; 120
2635.95Huo, Chen-Yu; Zheng, Tian-Lu; Dai, Wei-Hao; Zhang, Zi-Hao; Wang, Jin-Da; Zhu, Dao-Yong; Wang, Shao-Hua; Zhang, Xiao-Ming; Xu, Xue-Tao
InI3-catalyzed polyene cyclization of allenes and its application in the total synthesis of seven abietane-type diterpenoids
Chemical Science, 2022
1567985 CIFC265 H237 F18 Mo18 N29 O62 P8 S6C 1 2/c 128.6129; 15.7456; 64.158
90; 94.437; 90
28818.3Choudhari, Manjiri; Xu, Jingjing; McKay, Alasdair I.; Guerrin, Clément; Forsyth, Craig; Ma, Howard Z.; Goerigk, Lars; O'Hair, Richard A. J.; Bonnefont, Antoine; Ruhlmann, Laurent; Aloise, Stephane; Ritchie, Chris
A photo-switchable molecular capsule: sequential photoinduced processes
Chemical Science, 2022
1567986 CIFC8 H9 N5 O2 ZnP 21 21 219.7893; 10.0252; 10.2988
90; 90; 90
1010.72Liu, Hui; Ren, Dan-Dan; Gao, Peng-Fu; Zhang, Kun; Wu, Ya-Pan; Fu, Hong-Ru; Ma, Lu-Fang
Multicolor-tunable room-temperature afterglow and circularly polarized luminescence in chirality-induced coordination assemblies
Chemical Science, 2022
1567987 CIFC5 H4 N4P -13.7561; 10.2354; 14.2732
97.137; 96.109; 92.497
540.49Liu, Hui; Ren, Dan-Dan; Gao, Peng-Fu; Zhang, Kun; Wu, Ya-Pan; Fu, Hong-Ru; Ma, Lu-Fang
Multicolor-tunable room-temperature afterglow and circularly polarized luminescence in chirality-induced coordination assemblies
Chemical Science, 2022
1567988 CIFC8 H9 N5 O2 ZnP 21 21 219.7703; 9.9768; 10.6503
90; 90; 90
1038.15Liu, Hui; Ren, Dan-Dan; Gao, Peng-Fu; Zhang, Kun; Wu, Ya-Pan; Fu, Hong-Ru; Ma, Lu-Fang
Multicolor-tunable room-temperature afterglow and circularly polarized luminescence in chirality-induced coordination assemblies
Chemical Science, 2022
1567989 CIFC7 H13 N3 O4P 21 21 2112.4827; 16.0047; 4.74526
90; 90; 90
948.02Thursch, Lavenia J.; Lima, Thamires A.; O'Neill, Nichole; Ferreira, Fabio F.; Schweitzer-Stenner, Reinhard; Alvarez, Nicolas J.
Influence of central sidechain on self-assembly of glycine-x-glycine peptides.
Soft matter, 2023, 19, 394-409
1567990 CIFC8 H13 N3 O6P 21 21 2117.1256; 12.9078; 4.75585
90; 90; 90
1051.3Thursch, Lavenia J.; Lima, Thamires A.; O'Neill, Nichole; Ferreira, Fabio F.; Schweitzer-Stenner, Reinhard; Alvarez, Nicolas J.
Influence of central sidechain on self-assembly of glycine-x-glycine peptides.
Soft matter, 2023, 19, 394-409
1567991 CIFC10 H17 N5 O5P 1 21 111.7071; 4.7121; 12.4111
90; 104.951; 90
661.48Thursch, Lavenia J.; Lima, Thamires A.; O'Neill, Nichole; Ferreira, Fabio F.; Schweitzer-Stenner, Reinhard; Alvarez, Nicolas J.
Influence of central sidechain on self-assembly of glycine-x-glycine peptides.
Soft matter, 2023, 19, 394-409
1567992 CIFC13 H17 N3 O5P 21 21 214.89638; 9.6784; 28.5374
90; 90; 90
1352.36Thursch, Lavenia J.; Lima, Thamires A.; O'Neill, Nichole; Ferreira, Fabio F.; Schweitzer-Stenner, Reinhard; Alvarez, Nicolas J.
Influence of central sidechain on self-assembly of glycine-x-glycine peptides.
Soft matter, 2023, 19, 394-409
1567993 CIFC42 H33 Au2 Ni O2 P3 SP -112.3838; 13.889; 14.7679
64.065; 80.669; 83.913
2252.3Tao, Cheng-Bo; Fan, Ji-Qiang; Fei, Wenwen; Zhao, Yan; Li, Man-Bo
Structure and assembly of a hexanuclear AuNi bimetallic nanocluster.
Nanoscale, 2022, 15, 109-113
1567994 CIFC40 H36 Ni O2 P2 SP 1 21/c 139.25; 9.8991; 17.585
90; 92.559; 90
6825.7Tao, Cheng-Bo; Fan, Ji-Qiang; Fei, Wenwen; Zhao, Yan; Li, Man-Bo
Structure and assembly of a hexanuclear AuNi bimetallic nanocluster.
Nanoscale, 2022, 15, 109-113
1567995 CIFC45 H61 Cl4 N O3 P RhP 1 21 110.862; 19.566; 12.2
90; 111.654; 90
2409.8Rieg, Carolin; Kirchhof, Manuel; Gugeler, Katrin; Beurer, Ann-Katrin; Stein, Lukas; Dirnberger, Klaus; Frey, Wolfgang; Bruckner, Johanna R.; Traa, Yvonne; Kästner, Johannes; Ludwigs, Sabine; Laschat, Sabine; Dyballa, Michael
Determination of accessibility and spatial distribution of chiral Rh diene complexes immobilized on SBA-15 via phosphine-based solid-state NMR probe molecules
Catalysis Science & Technology, 2023, 13, 410-425
1567996 CIFC42 H42 Cl6 Fe6 N6 O38 Pd3P m -3 n22.1165; 22.1165; 22.1165
90; 90; 90
10818.1Miguel-Casañ, Eugenia; Darawsheh, Mohanad D.; Fariña-Torres, Víctor; Vitórica-Yrezábal, Iñigo J; Andres-Garcia, Eduardo; Fañanás-Mastral, Martín; Mínguez Espallargas, Guillermo
Heterometallic palladium-iron metal-organic framework as a highly active catalyst for cross-coupling reactions.
Chemical science, 2022, 14, 179-185
1567997 CIFC2 H2 I2 O4 Pb Rb2A m m 26.0662; 6.7946; 13.7817
90; 90; 90
568.046Zhang, Xiang-Yu; Zhou, Zi-Qi; Bao, Wen-Xiu; Tang, Hong-Xin; Fu, Rui-Biao; Ma, Zu-Ju; Wu, Xin-Tao
New lead-iodide formates with a strong second-harmonic generation response and suitable birefringence obtained by the substitution strategy.
Chemical science, 2022, 14, 136-142
1567998 CIFC2 H2 I2 K2 O4 PbA m m 25.8024; 6.774; 13.626
90; 90; 90
535.58Zhang, Xiang-Yu; Zhou, Zi-Qi; Bao, Wen-Xiu; Tang, Hong-Xin; Fu, Rui-Biao; Ma, Zu-Ju; Wu, Xin-Tao
New lead-iodide formates with a strong second-harmonic generation response and suitable birefringence obtained by the substitution strategy.
Chemical science, 2022, 14, 136-142
1567999 CIFC20 H30 Cu3 N6 Na O4 S6C m c e19.568; 10.61; 30.314
90; 90; 90
6294Larsen, Emil M. H.; Bonde, Niels A.; Weihe, Høgni; Ollivier, Jacques; Vosch, Tom; Lohmiller, Thomas; Holldack, Karsten; Schnegg, Alexander; Perfetti, Mauro; Bendix, Jesper
Experimental assignment of long-range magnetic communication through Pd & Pt metallophilic contacts.
Chemical science, 2023, 14, 266-276
1568000 CIFC18 H22 N2 Ni O4 Pd S4C 1 2/c 19.7142; 18.2617; 13.1518
90; 97.378; 90
2313.8Larsen, Emil M. H.; Bonde, Niels A.; Weihe, Høgni; Ollivier, Jacques; Vosch, Tom; Lohmiller, Thomas; Holldack, Karsten; Schnegg, Alexander; Perfetti, Mauro; Bendix, Jesper
Experimental assignment of long-range magnetic communication through Pd & Pt metallophilic contacts.
Chemical science, 2023, 14, 266-276
1568001 CIFC18 H22 Co N2 O4 Pd S4C 1 2/c 19.7593; 18.2739; 13.1854
90; 97.317; 90
2332.3Larsen, Emil M. H.; Bonde, Niels A.; Weihe, Høgni; Ollivier, Jacques; Vosch, Tom; Lohmiller, Thomas; Holldack, Karsten; Schnegg, Alexander; Perfetti, Mauro; Bendix, Jesper
Experimental assignment of long-range magnetic communication through Pd & Pt metallophilic contacts.
Chemical science, 2023, 14, 266-276
1568002 CIFC13 H16 N2 Ni O6 Pt S4P 1 21/c 18.4782; 12.2733; 19.6523
90; 93.668; 90
2040.74Larsen, Emil M. H.; Bonde, Niels A.; Weihe, Høgni; Ollivier, Jacques; Vosch, Tom; Lohmiller, Thomas; Holldack, Karsten; Schnegg, Alexander; Perfetti, Mauro; Bendix, Jesper
Experimental assignment of long-range magnetic communication through Pd & Pt metallophilic contacts.
Chemical science, 2023, 14, 266-276
1568003 CIFC13 H16 Co N2 O6 Pt S4P 1 21/c 18.4707; 12.2809; 19.82
90; 93.914; 90
2057Larsen, Emil M. H.; Bonde, Niels A.; Weihe, Høgni; Ollivier, Jacques; Vosch, Tom; Lohmiller, Thomas; Holldack, Karsten; Schnegg, Alexander; Perfetti, Mauro; Bendix, Jesper
Experimental assignment of long-range magnetic communication through Pd & Pt metallophilic contacts.
Chemical science, 2023, 14, 266-276
1568004 CIFC13 H16 Co N2 O6 Pd S4P 1 21/c 18.4637; 12.3085; 19.8273
90; 93.171; 90
2062.36Larsen, Emil M. H.; Bonde, Niels A.; Weihe, Høgni; Ollivier, Jacques; Vosch, Tom; Lohmiller, Thomas; Holldack, Karsten; Schnegg, Alexander; Perfetti, Mauro; Bendix, Jesper
Experimental assignment of long-range magnetic communication through Pd & Pt metallophilic contacts.
Chemical science, 2023, 14, 266-276
1568005 CIFC37 H27 O2 PP -110.4208; 10.7638; 11.9994
99.167; 94.905; 94.346
1318.41Liu, Wei-Chun; Gabbaï, François P.
Placing gold on a π±surface: ligand design and impact on reactivity
Chemical Science, 2023, 14, 277-283
1568006 CIFC38 H29 B F4.03 N PP 1 21/c 19.0075; 15.4256; 20.8849
90; 93.52; 90
2896.4Liu, Wei-Chun; Gabbaï, François P.
Placing gold on a π±surface: ligand design and impact on reactivity
Chemical Science, 2023, 14, 277-283
1568007 CIFC39 H31 Au B Cl3 F4 N PP -110.796; 12.644; 12.984
86.86; 86.71; 79.67
1739Liu, Wei-Chun; Gabbaï, François P.
Placing gold on a π±surface: ligand design and impact on reactivity
Chemical Science, 2023, 14, 277-283
1568008 CIFC34 H25 Au Cl F3 N O4 P SP -18.73; 13.2735; 14.5419
80.962; 75.294; 80.841
1597.04Liu, Wei-Chun; Gabbaï, François P.
Placing gold on a π±surface: ligand design and impact on reactivity
Chemical Science, 2023, 14, 277-283
1568009 CIFC37 H26 B F4 O PP -18.0558; 13.0237; 13.3743
89.998; 86.084; 84.721
1393.94Liu, Wei-Chun; Gabbaï, François P.
Placing gold on a π±surface: ligand design and impact on reactivity
Chemical Science, 2023, 14, 277-283
1568010 CIFC36 H26 Au B Cl O PP -110.4379; 12.0326; 12.5622
79.075; 70.549; 74.216
1423.07Liu, Wei-Chun; Gabbaï, François P.
Placing gold on a π±surface: ligand design and impact on reactivity
Chemical Science, 2023, 14, 277-283
1568011 CIFC77 H56 Au2 Cl4 F6 O9 P2 S2C 1 2/c 131.863; 9.1593; 25.398
90; 113.066; 90
6819.6Liu, Wei-Chun; Gabbaï, François P.
Placing gold on a π±surface: ligand design and impact on reactivity
Chemical Science, 2023, 14, 277-283
1568012 CIFC25 H34 B N O4P 1 21/n 19.4689; 20.7919; 12.8601
90; 109.311; 90
2389.4Hirano, Koji; Nishino, Soshi; Nishii, Yuji
anti-Selective synthesis of β-boryl-α-amino acid derivatives by Cu-catalysed borylamination of α,β-unsaturated esters
Chemical Science, 2022
1568013 CIFC54 H46 Cl7 P2 ReP -110.939; 13.109; 18.4122
85.943; 80.643; 72.033
2477.5Bai, Wei; Tsang, Long Yiu; Wang, Yilun; Li, Yang; Sung, Herman H. Y.; Williams, Ian D.; Jia, Guochen
Synthesis and characterization of bi(metallacycloprop-1-ene) complexes.
Chemical science, 2022, 14, 96-102
1568014 CIFC32 H36 Cl3 P2 ReC 1 2/c 111.082; 18.4374; 15.6667
90; 107.276; 90
3056.66Bai, Wei; Tsang, Long Yiu; Wang, Yilun; Li, Yang; Sung, Herman H. Y.; Williams, Ian D.; Jia, Guochen
Synthesis and characterization of bi(metallacycloprop-1-ene) complexes.
Chemical science, 2022, 14, 96-102
1568015 CIFC42 H38 Cl3 P2 ReP n a 2123.4928; 11.58031; 13.76598
90; 90; 90
3745.09Bai, Wei; Tsang, Long Yiu; Wang, Yilun; Li, Yang; Sung, Herman H. Y.; Williams, Ian D.; Jia, Guochen
Synthesis and characterization of bi(metallacycloprop-1-ene) complexes.
Chemical science, 2022, 14, 96-102
1568016 CIFC22.31 H21.62 Cl0.62 N3 O2P 21 21 2114.6467; 14.7349; 18.2076
90; 90; 90
3929.5Luo, Mu-Peng; Gu, Yi-Jie; Wang, Shou-Guo
Photocatalytic enantioselective Minisci reaction of β-carbolines and application to natural product synthesis.
Chemical science, 2023, 14, 251-256
1568017 CIFC77 H70 Br2 Cl2 N2 NiP 1 21/c 115.8351; 23.18; 17.8789
90; 103.973; 90
6368.4Yan, Zhengpeng; Chang, Guanru; Zou, Wenping; Luo, Gen; Dai, Shengyu
Synthesis of lightly branched ultrahigh-molecular-weight polyethylene using cationic benzocyclohexyl nickel catalysts
Polymer Chemistry, 2023, 14, 183-190
1568018 CIFC31 H53 N2 O3P 1 21/n 17.4068; 44.744; 8.8243
90; 94.435; 90
2915.7Houard, Felix; Cucinotta, Guiseppe; Guizouarn, Thierry; Suffren, Yan; Calvez, Guillaume; Daiguebonne, Carole; Guillou, Olivier; Artzner, Franck; Mannini, Matteo; Bernot, Kevin
Metallogels: a novel approach for the nanostructuration of single-chain magnets.
Materials horizons, 2023, 10, 547-555
1568019 CIFC75 H67 N11 O18 Y2P -111.8512; 16.2294; 19.309
78.447; 75.155; 89.692
3513Balkus, Kenneth J.; Abbas, Muhammad; Maceda, Amanda M.; Firouzi, Hamid R.; Xiao, Zhifeng; Arman, Hadi; Shi, Yanshu; Zhou, Hong-Cai
Fluorine Extraction from Organofluorine Molecules to Make Fluorinated Clusters in Yttrium MOFs
Chemical Science, 2022
1568020 CIFC30 H15 F2 N3 O6.62 Y1.5I 4/m17.7478; 17.7478; 25.9278
90; 90; 90
8166.85Balkus, Kenneth J.; Abbas, Muhammad; Maceda, Amanda M.; Firouzi, Hamid R.; Xiao, Zhifeng; Arman, Hadi; Shi, Yanshu; Zhou, Hong-Cai
Fluorine Extraction from Organofluorine Molecules to Make Fluorinated Clusters in Yttrium MOFs
Chemical Science, 2022
1568021 CIFC120 H96 Cu6 F36 N32 Si6P m -3 n17.5318; 17.5318; 17.5318
90; 90; 90
5388.64Jiang, Yunjia; Wang, Lingyao; Yan, Tongan; Hu, Jianbo; Sun, Wanqi; Krishna, Rajamani; Wang, Dongmei; Gu, Zonglin; Liu, Dahuan; Cui, Xili; Xing, Huabin; Zhang, Yuanbin
Insights into the thermodynamic-kinetic synergistic separation of propyne/propylene in anion pillared cage MOFs with entropy-enthalpy balanced adsorption sites.
Chemical science, 2023, 14, 298-309
1568022 CIFC32 H32 Cu F6 N5.33 SiP m -3 n17.5254; 17.5254; 17.5254
90; 90; 90
5382.7Jiang, Yunjia; Wang, Lingyao; Yan, Tongan; Hu, Jianbo; Sun, Wanqi; Krishna, Rajamani; Wang, Dongmei; Gu, Zonglin; Liu, Dahuan; Cui, Xili; Xing, Huabin; Zhang, Yuanbin
Insights into the thermodynamic-kinetic synergistic separation of propyne/propylene in anion pillared cage MOFs with entropy-enthalpy balanced adsorption sites.
Chemical science, 2023, 14, 298-309
1568023 CIFC29 H34 Cu F6 N5.33 SiP m -3 n17.4998; 17.4998; 17.4998
90; 90; 90
5359.2Jiang, Yunjia; Wang, Lingyao; Yan, Tongan; Hu, Jianbo; Sun, Wanqi; Krishna, Rajamani; Wang, Dongmei; Gu, Zonglin; Liu, Dahuan; Cui, Xili; Xing, Huabin; Zhang, Yuanbin
Insights into the thermodynamic-kinetic synergistic separation of propyne/propylene in anion pillared cage MOFs with entropy-enthalpy balanced adsorption sites.
Chemical science, 2023, 14, 298-309
1568024 CIFC20 H16 Cu F6 N5.33 SiP m -3 n17.5051; 17.5051; 17.5051
90; 90; 90
5364.06Jiang, Yunjia; Wang, Lingyao; Yan, Tongan; Hu, Jianbo; Sun, Wanqi; Krishna, Rajamani; Wang, Dongmei; Gu, Zonglin; Liu, Dahuan; Cui, Xili; Xing, Huabin; Zhang, Yuanbin
Insights into the thermodynamic-kinetic synergistic separation of propyne/propylene in anion pillared cage MOFs with entropy-enthalpy balanced adsorption sites.
Chemical science, 2023, 14, 298-309
1568025 CIFC59 H51 N5 O4P 1 21/c 121.815; 24.526; 8.429
90; 95.275; 90
4490.7Tian, Xiaoqi; Shoyama, Kazutaka; Würthner, Frank
Nitrogen-doped polycyclic aromatic hydrocarbons by a one-pot Suzuki coupling/intramolecular S<sub>N</sub>Ar reaction.
Chemical science, 2023, 14, 284-290
1568026 CIFC60 H52 N4 O4P 18.3457; 9.3455; 17.6411
95.16; 99.293; 115.715
1203.41Tian, Xiaoqi; Shoyama, Kazutaka; Würthner, Frank
Nitrogen-doped polycyclic aromatic hydrocarbons by a one-pot Suzuki coupling/intramolecular S<sub>N</sub>Ar reaction.
Chemical science, 2023, 14, 284-290
1568027 CIFC36 H28 N2 O2P 1 21/n 18.2004; 31.668; 10.204
90; 99.25; 90
2615.4Tian, Xiaoqi; Shoyama, Kazutaka; Würthner, Frank
Nitrogen-doped polycyclic aromatic hydrocarbons by a one-pot Suzuki coupling/intramolecular S<sub>N</sub>Ar reaction.
Chemical science, 2023, 14, 284-290
1568028 CIFC60 H52 N4 O4P -116.7768; 17.5515; 17.6585
104.872; 90.047; 109.465
4717Tian, Xiaoqi; Shoyama, Kazutaka; Würthner, Frank
Nitrogen-doped polycyclic aromatic hydrocarbons by a one-pot Suzuki coupling/intramolecular S<sub>N</sub>Ar reaction.
Chemical science, 2023, 14, 284-290
1568029 CIFC79 H65 N3 O4P -18.202; 14.428; 24.669
90.012; 85.889; 90.023
2912Tian, Xiaoqi; Shoyama, Kazutaka; Würthner, Frank
Nitrogen-doped polycyclic aromatic hydrocarbons by a one-pot Suzuki coupling/intramolecular S<sub>N</sub>Ar reaction.
Chemical science, 2023, 14, 284-290
1568030 CIFC61 H53 N3 O4P -116.958; 17.1701; 17.8837
104.311; 109.776; 90.172
4726.6Tian, Xiaoqi; Shoyama, Kazutaka; Würthner, Frank
Nitrogen-doped polycyclic aromatic hydrocarbons by a one-pot Suzuki coupling/intramolecular S<sub>N</sub>Ar reaction.
Chemical science, 2023, 14, 284-290
1568031 CIFC37 H44 Cl2 N7 O10 SmP 1 21/n 116.9139; 14.088; 17.1758
90; 99.958; 90
4031Zhang, Chengjian; Li, Sichen; Zheng, Ruijie; Tai, Shengdi; Yang, Kang; Zhang, Kun
Highly selective and discriminative detection of small alcohols based on a dual-emission macrocyclic samarium complex.
Analytical methods : advancing methods and applications, 2023, 15, 361-367
1568032 CIFC84 H80 F6 N4 O4 P5 Re2C 1 2/c 129.0838; 16.4902; 38.9836
90; 94.942; 90
18626.9Takahashi, Maria; Asatani, Tsuyoshi; Morimoto, Tatsuki; Kamakura, Yoshinobu; Fujii, Kotaro; Yashima, Masatomo; Hosokawa, Naoki; Tamaki, Yusuke; Ishitani, Osamu
Supramolecular multi-electron redox photosensitisers comprising a ring-shaped Re(i) tetranuclear complex and a polyoxometalate.
Chemical science, 2023, 14, 691-704
1568033 CIFC168 H160 N8 O48 P8 Re4 Si W12P -118.8254; 23.1045; 33.0343
101.307; 101.064; 112.648
12422.4Takahashi, Maria; Asatani, Tsuyoshi; Morimoto, Tatsuki; Kamakura, Yoshinobu; Fujii, Kotaro; Yashima, Masatomo; Hosokawa, Naoki; Tamaki, Yusuke; Ishitani, Osamu
Supramolecular multi-electron redox photosensitisers comprising a ring-shaped Re(i) tetranuclear complex and a polyoxometalate.
Chemical science, 2023, 14, 691-704
1568034 CIFC17 H16 B Br F4 N4 OP 21 21 219.7229; 11.8712; 15.4592
90; 90; 90
1784.3Duan, Zhuan; Young, Claire M.; Zhu, Jiayun; Slawin, Alexandra M. Z.; O'Donoghue, AnnMarie C; Smith, Andrew D.
Rate and equilibrium constants for the addition of triazolium salt derived N-heterocyclic carbenes to heteroaromatic aldehydes.
Chemical science, 2022, 14, 162-170
1568035 CIFC44 H68 Br6 Mn5 O22P -110.965; 11.6978; 13.6443
111.74; 101.903; 90.098
1584.79Antico, Emanuele; Leutzsch, Markus; Wessel, Niklas; Weyhermüller, Thomas; Werlé, Christophe; Leitner, Walter
Selective oxidation of silanes into silanols with water using [MnBr(CO)<sub>5</sub>] as a precatalyst.
Chemical science, 2022, 14, 54-60
1568036 CIFC13 H22 O2 SiP b c a8.0671; 15.0932; 22.4852
90; 90; 90
2737.76Antico, Emanuele; Leutzsch, Markus; Wessel, Niklas; Weyhermüller, Thomas; Werlé, Christophe; Leitner, Walter
Selective oxidation of silanes into silanols with water using [MnBr(CO)<sub>5</sub>] as a precatalyst.
Chemical science, 2022, 14, 54-60
1568037 CIFC16 H22 O3 Si2P 1 21/n 112.9559; 10.4977; 28.982
90; 95.735; 90
3922Antico, Emanuele; Leutzsch, Markus; Wessel, Niklas; Weyhermüller, Thomas; Werlé, Christophe; Leitner, Walter
Selective oxidation of silanes into silanols with water using [MnBr(CO)<sub>5</sub>] as a precatalyst.
Chemical science, 2022, 14, 54-60
1568038 CIFC22 H12 F3 NP 1 21/c 126.91; 6.4608; 9.318
90; 94.442; 90
1615.2Liu, Sen; Li, Jun; Hou, Tianjiao; Shen, Xuan
The study of a novel high selectivity pyrenyl-based fluorescence probe with aggregation-induced emission characteristics for Fe<sup>3+</sup> detection designed by a structure modulation strategy.
Analytical methods : advancing methods and applications, 2022, 14, 5081-5090
1568039 CIFC22 H15 NP 1 21/c 117.626; 7.6841; 11.574
90; 100.988; 90
1538.8Liu, Sen; Li, Jun; Hou, Tianjiao; Shen, Xuan
The study of a novel high selectivity pyrenyl-based fluorescence probe with aggregation-induced emission characteristics for Fe<sup>3+</sup> detection designed by a structure modulation strategy.
Analytical methods : advancing methods and applications, 2022, 14, 5081-5090
1568040 CIFC156 H133.5 Cl4.5 F6 N13 O9P -115.6935; 17.9065; 25.3093
102.029; 94.298; 105.192
6649.5Mirabella, Chiara F. M.; Aragay, Gemma; Ballester, Pablo
Influence of the solvent in the self-assembly and binding properties of [1 + 1] tetra-imine bis-calix[4]pyrrole cages.
Chemical science, 2022, 14, 186-195
1568041 CIFC16 H14 O3 SP 21 21 217.6531; 10.1518; 18.1461
90; 90; 90
1409.82Kong, Lingheng; Zou, Yun; Li, Xiao-Xi; Zhang, Xue-Peng; Li, Xingwei
Rhodium-catalyzed enantioselective C-H alkynylation of sulfoxides in diverse patterns: desymmetrization, kinetic resolution, and parallel kinetic resolution.
Chemical science, 2023, 14, 317-322
1568042 CIFC16 H14 O2 SP 21 21 217.6856; 10.0965; 18.0404
90; 90; 90
1399.89Kong, Lingheng; Zou, Yun; Li, Xiao-Xi; Zhang, Xue-Peng; Li, Xingwei
Rhodium-catalyzed enantioselective C-H alkynylation of sulfoxides in diverse patterns: desymmetrization, kinetic resolution, and parallel kinetic resolution.
Chemical science, 2023, 14, 317-322
1568043 CIFC333 H398 Ag30 B3 Cl33 N4 P8 Pt S14P -121.6934; 23.8539; 34.402
96.755; 100.906; 100.248
16989.5Wang, Silan; Li, Qinzhen; Yang, Sha; Yu, Haizhu; Chai, Jinsong; Zhu, Manzhou
H-bond-induced luminescence enhancement in a Pt<sub>1</sub>Ag<sub>30</sub> nanocluster and its application in methanol detection.
Nanoscale, 2022, 14, 16647-16654
1568044 CIFC15 H12 B3 N3 O3P m m n :211.4709; 9.6054; 10.811
90; 90; 90
1191.2Wang, Weize; Wang, Linxia; Du, Fei; Wang, Gang-Ding; Hou, Lei; Zhu, Zhonghua; Liu, Bo; Wang, Yao-Yu
Dative B←N bonds based crystalline organic framework with permanent porosity for acetylene storage and separation.
Chemical science, 2023, 14, 533-539
1568045 CIFC51 H58 O5P 110.6821; 12.0842; 17.057
93.142; 105.229; 97.685
2096.06Zhang, Xin; Tong, Shuo; Zhu, Jieping; Wang, Mei-Xiang
Inherently chiral calixarenes by a catalytic enantioselective desymmetrizing cross-dehydrogenative coupling.
Chemical science, 2023, 14, 827-832
1568046 CIFC51 H56 O5P -19.359; 12.7052; 18.7749
80.266; 79.829; 76.85
2120.34Zhang, Xin; Tong, Shuo; Zhu, Jieping; Wang, Mei-Xiang
Inherently chiral calixarenes by a catalytic enantioselective desymmetrizing cross-dehydrogenative coupling.
Chemical science, 2023, 14, 827-832
1568047 CIFC22 H42 Cl2 Hf Si4P b c n17.8746; 9.0854; 18.3865
90; 90; 90
2985.9Gransbury, Gemma K.; Réant, Benjamin L L; Wooles, Ashley J.; Emerson-King, Jack; Chilton, Nicholas F.; Liddle, Stephen T.; Mills, David P.
Electronic structure comparisons of isostructural early d- and f-block metal(iii) bis(cyclopentadienyl) silanide complexes.
Chemical science, 2023, 14, 621-634
1568048 CIFC44 H84 I2 Nd2 Si8P -110.7367; 11.5169; 13.3589
73.257; 83.329; 78.423
1546.66Gransbury, Gemma K.; Réant, Benjamin L L; Wooles, Ashley J.; Emerson-King, Jack; Chilton, Nicholas F.; Liddle, Stephen T.; Mills, David P.
Electronic structure comparisons of isostructural early d- and f-block metal(iii) bis(cyclopentadienyl) silanide complexes.
Chemical science, 2023, 14, 621-634
1568049 CIFC31 H69 Si8 TiC 1 c 110.2297; 23.3116; 18.6778
90; 101.213; 90
4369.08Gransbury, Gemma K.; Réant, Benjamin L L; Wooles, Ashley J.; Emerson-King, Jack; Chilton, Nicholas F.; Liddle, Stephen T.; Mills, David P.
Electronic structure comparisons of isostructural early d- and f-block metal(iii) bis(cyclopentadienyl) silanide complexes.
Chemical science, 2023, 14, 621-634
1568050 CIFC31 H69 La Si8P 1 21/n 117.9162; 13.3218; 20.3331
90; 111.465; 90
4516.4Gransbury, Gemma K.; Réant, Benjamin L L; Wooles, Ashley J.; Emerson-King, Jack; Chilton, Nicholas F.; Liddle, Stephen T.; Mills, David P.
Electronic structure comparisons of isostructural early d- and f-block metal(iii) bis(cyclopentadienyl) silanide complexes.
Chemical science, 2023, 14, 621-634
1568051 CIFC44 H84 I2 Si8 U2P -110.6833; 11.4914; 13.2297
73.117; 83.273; 78.875
1521.72Gransbury, Gemma K.; Réant, Benjamin L L; Wooles, Ashley J.; Emerson-King, Jack; Chilton, Nicholas F.; Liddle, Stephen T.; Mills, David P.
Electronic structure comparisons of isostructural early d- and f-block metal(iii) bis(cyclopentadienyl) silanide complexes.
Chemical science, 2023, 14, 621-634
1568052 CIFC31 H69 Ce Si8P 1 21/n 117.8079; 13.2758; 20.3529
90; 111.045; 90
4490.8Gransbury, Gemma K.; Réant, Benjamin L L; Wooles, Ashley J.; Emerson-King, Jack; Chilton, Nicholas F.; Liddle, Stephen T.; Mills, David P.
Electronic structure comparisons of isostructural early d- and f-block metal(iii) bis(cyclopentadienyl) silanide complexes.
Chemical science, 2023, 14, 621-634
1568053 CIFC31 H69 Si8 ZrP n a 2137.0378; 11.7708; 20.1996
90; 90; 90
8806.31Gransbury, Gemma K.; Réant, Benjamin L L; Wooles, Ashley J.; Emerson-King, Jack; Chilton, Nicholas F.; Liddle, Stephen T.; Mills, David P.
Electronic structure comparisons of isostructural early d- and f-block metal(iii) bis(cyclopentadienyl) silanide complexes.
Chemical science, 2023, 14, 621-634
1568054 CIFC31 H69 Si8 UP 1 21/n 117.9833; 13.2292; 20.4047
90; 111.407; 90
4519.5Gransbury, Gemma K.; Réant, Benjamin L L; Wooles, Ashley J.; Emerson-King, Jack; Chilton, Nicholas F.; Liddle, Stephen T.; Mills, David P.
Electronic structure comparisons of isostructural early d- and f-block metal(iii) bis(cyclopentadienyl) silanide complexes.
Chemical science, 2023, 14, 621-634
1568055 CIFC31 H69 Nd Si8P 1 21/n 117.7679; 13.2234; 20.37
90; 110.891; 90
4471.3Gransbury, Gemma K.; Réant, Benjamin L L; Wooles, Ashley J.; Emerson-King, Jack; Chilton, Nicholas F.; Liddle, Stephen T.; Mills, David P.
Electronic structure comparisons of isostructural early d- and f-block metal(iii) bis(cyclopentadienyl) silanide complexes.
Chemical science, 2023, 14, 621-634
1568056 CIFC18 H15 N2 O2C 1 2/c 120.1187; 16.7884; 8.3834
90; 102.468; 90
2764.8Tajima, Keita; Matsuo, Kyohei; Yamada, Hiroko; Fukui, Norihito; Shinokubo, Hiroshi
Diazazethrene bisimide: a strongly electron-accepting π-system synthesized <i>via</i> the incorporation of both imide substituents and imine-type nitrogen atoms into zethrene.
Chemical science, 2023, 14, 635-642
1568057 CIFC50 H34 Cl2 N4 O4P -18.0994; 11.7159; 21.0793
102.21; 97.445; 96.128
1919.86Tajima, Keita; Matsuo, Kyohei; Yamada, Hiroko; Fukui, Norihito; Shinokubo, Hiroshi
Diazazethrene bisimide: a strongly electron-accepting π-system synthesized <i>via</i> the incorporation of both imide substituents and imine-type nitrogen atoms into zethrene.
Chemical science, 2023, 14, 635-642
1568058 CIFC39 H33 Co N2 O2P 1 21/c 19.5098; 20.5556; 15.4387
90; 95.024; 90
3006.36Tajima, Keita; Matsuo, Kyohei; Yamada, Hiroko; Fukui, Norihito; Shinokubo, Hiroshi
Diazazethrene bisimide: a strongly electron-accepting π-system synthesized <i>via</i> the incorporation of both imide substituents and imine-type nitrogen atoms into zethrene.
Chemical science, 2023, 14, 635-642
1568059 CIFC52 H49 N4 O4F d d 234.9018; 59.974; 7.6088
90; 90; 90
15926.7Tajima, Keita; Matsuo, Kyohei; Yamada, Hiroko; Fukui, Norihito; Shinokubo, Hiroshi
Diazazethrene bisimide: a strongly electron-accepting π-system synthesized <i>via</i> the incorporation of both imide substituents and imine-type nitrogen atoms into zethrene.
Chemical science, 2023, 14, 635-642
1568060 CIFC16 H15 F3 N6 O2 SP 1 21/n 111.715; 7.738; 19.834
90; 95.723; 90
1789Hu, Wei; Zhang, Xiang; Liu, Yuanchang; Liu, Teng; Wen, Jiale; Peng, Xiaopeng; Xie, Xin; Chen, Weiming
Two-stage one-pot synthetic strategy for the key triazone-triazole intermediate of ensitrelvir (S-217622), an oral clinical candidate for treating COVID-19
RSC Advances, 2022, 12, 34808-34814
1568061 CIFC29 H28 N2 O3P -18.7151; 9.8582; 14.979
109.017; 94.596; 107.711
1135.83Schuh, Tristan; Kataeva, Olga; Knölker, Hans-Joachim
μ-Oxo-bis[(octacosafluoro-<i>meso</i>-tetraphenylporphyrinato)iron(iii)] - synthesis, crystal structure, and catalytic activity in oxidation reactions.
Chemical science, 2023, 14, 257-265
1568062 CIFC88 H4 F56 Fe2 N8 O3P 4/n c c :229.489; 29.489; 20.678
90; 90; 90
17982Schuh, Tristan; Kataeva, Olga; Knölker, Hans-Joachim
μ-Oxo-bis[(octacosafluoro-<i>meso</i>-tetraphenylporphyrinato)iron(iii)] - synthesis, crystal structure, and catalytic activity in oxidation reactions.
Chemical science, 2023, 14, 257-265
1568063 CIFC55 H104 O24 Ti6R -3 :H15.496; 15.496; 53.7557
90; 90; 120
11178.8Brown, Stephen E.; Mantaloufa, Ioanna; Andrews, Ryan T.; Barnes, Thomas J.; Lees, Martin R.; De Proft, Frank; Cunha, Ana V.; Pike, Sebastian D.
Photoactivation of titanium-oxo cluster [Ti<sub>6</sub>O<sub>6</sub>(OR)<sub>6</sub>(O<sub>2</sub>C <sup><i>t</i></sup> Bu)<sub>6</sub>]: mechanism, photoactivated structures, and onward reactivity with O<sub>2</sub> to a peroxide complex.
Chemical science, 2023, 14, 675-683
1568064 CIFC30.5 H61 O13 Ti3P -113.2495; 13.414; 14.7584
63.032; 64.038; 65.591
2024.99Brown, Stephen E.; Mantaloufa, Ioanna; Andrews, Ryan T.; Barnes, Thomas J.; Lees, Martin R.; De Proft, Frank; Cunha, Ana V.; Pike, Sebastian D.
Photoactivation of titanium-oxo cluster [Ti<sub>6</sub>O<sub>6</sub>(OR)<sub>6</sub>(O<sub>2</sub>C <sup><i>t</i></sup> Bu)<sub>6</sub>]: mechanism, photoactivated structures, and onward reactivity with O<sub>2</sub> to a peroxide complex.
Chemical science, 2023, 14, 675-683
1568065 CIFC31 H67.75 O11 Ti2P n m a21.4239; 15.2022; 25.1197
90; 90; 90
8181.25Brown, Stephen E.; Mantaloufa, Ioanna; Andrews, Ryan T.; Barnes, Thomas J.; Lees, Martin R.; De Proft, Frank; Cunha, Ana V.; Pike, Sebastian D.
Photoactivation of titanium-oxo cluster [Ti<sub>6</sub>O<sub>6</sub>(OR)<sub>6</sub>(O<sub>2</sub>C <sup><i>t</i></sup> Bu)<sub>6</sub>]: mechanism, photoactivated structures, and onward reactivity with O<sub>2</sub> to a peroxide complex.
Chemical science, 2023, 14, 675-683
1568066 CIFC48 H96 O24 Ti6P -111.4703; 12.9048; 22.7941
84.7647; 87.1313; 76.867
3270.58Brown, Stephen E.; Mantaloufa, Ioanna; Andrews, Ryan T.; Barnes, Thomas J.; Lees, Martin R.; De Proft, Frank; Cunha, Ana V.; Pike, Sebastian D.
Photoactivation of titanium-oxo cluster [Ti<sub>6</sub>O<sub>6</sub>(OR)<sub>6</sub>(O<sub>2</sub>C <sup><i>t</i></sup> Bu)<sub>6</sub>]: mechanism, photoactivated structures, and onward reactivity with O<sub>2</sub> to a peroxide complex.
Chemical science, 2023, 14, 675-683
1568067 CIFC47.57 H88.14 Cl1.14 N O24 Ti6P 1 21/n 114.4104; 20.6054; 24.3253
90; 97.146; 90
7166.9Brown, Stephen E.; Mantaloufa, Ioanna; Andrews, Ryan T.; Barnes, Thomas J.; Lees, Martin R.; De Proft, Frank; Cunha, Ana V.; Pike, Sebastian D.
Photoactivation of titanium-oxo cluster [Ti<sub>6</sub>O<sub>6</sub>(OR)<sub>6</sub>(O<sub>2</sub>C <sup><i>t</i></sup> Bu)<sub>6</sub>]: mechanism, photoactivated structures, and onward reactivity with O<sub>2</sub> to a peroxide complex.
Chemical science, 2023, 14, 675-683
1568068 CIFC59 H100 N2 O22 Ti6P 1 21/c 114.5668; 24.3499; 21.7724
90; 106.66; 90
7398.48Brown, Stephen E.; Mantaloufa, Ioanna; Andrews, Ryan T.; Barnes, Thomas J.; Lees, Martin R.; De Proft, Frank; Cunha, Ana V.; Pike, Sebastian D.
Photoactivation of titanium-oxo cluster [Ti<sub>6</sub>O<sub>6</sub>(OR)<sub>6</sub>(O<sub>2</sub>C <sup><i>t</i></sup> Bu)<sub>6</sub>]: mechanism, photoactivated structures, and onward reactivity with O<sub>2</sub> to a peroxide complex.
Chemical science, 2023, 14, 675-683
1568069 CIFC54 H68 F N4 O13.2 S1.6R -3 :H11.7156; 11.7156; 76.442
90; 90; 120
9086.4Lin, Yannan; Du, Kang; Gau, Michael R.; Dmochowski, Ivan J.
Turn-on fluorescent capsule for selective fluoride detection and water purification.
Chemical science, 2023, 14, 291-297
1568070 CIFC48 H108 Cl12 Cu3 N6I 1 2 120.7149; 18.0468; 19.5556
90; 107.343; 90
6978.3Li, Bin; Yu, Ying; Xin, Mingyang; Xu, Jialiang; Zhao, Tianzhe; Kang, Huimin; Xing, Guoxiang; Zhao, Peisheng; Zhang, Tianyong; Jiang, Shuang
Second-order nonlinear optical properties of copper-based hybrid organic-inorganic perovskites induced by chiral amines.
Nanoscale, 2023, 15, 1595-1601
1568071 CIFC24 H28 Cl4 Cu N2P 1 21 112.655; 7.1832; 13.9997
90; 94.341; 90
1268.97Li, Bin; Yu, Ying; Xin, Mingyang; Xu, Jialiang; Zhao, Tianzhe; Kang, Huimin; Xing, Guoxiang; Zhao, Peisheng; Zhang, Tianyong; Jiang, Shuang
Second-order nonlinear optical properties of copper-based hybrid organic-inorganic perovskites induced by chiral amines.
Nanoscale, 2023, 15, 1595-1601
1568072 CIFC24 H28 Cl4 Cu N2P 1 21 112.6402; 7.1773; 14.0019
90; 94.296; 90
1266.72Li, Bin; Yu, Ying; Xin, Mingyang; Xu, Jialiang; Zhao, Tianzhe; Kang, Huimin; Xing, Guoxiang; Zhao, Peisheng; Zhang, Tianyong; Jiang, Shuang
Second-order nonlinear optical properties of copper-based hybrid organic-inorganic perovskites induced by chiral amines.
Nanoscale, 2023, 15, 1595-1601
1568073 CIFC48 H108 Cl12 Cu3 N6I 1 2 120.4795; 18.1694; 19.6068
90; 107.039; 90
6975.5Li, Bin; Yu, Ying; Xin, Mingyang; Xu, Jialiang; Zhao, Tianzhe; Kang, Huimin; Xing, Guoxiang; Zhao, Peisheng; Zhang, Tianyong; Jiang, Shuang
Second-order nonlinear optical properties of copper-based hybrid organic-inorganic perovskites induced by chiral amines.
Nanoscale, 2023, 15, 1595-1601
1568074 CIFC66 H58 F16 S8P n a 2134.3683; 28.4432; 5.4447
90; 90; 90
5322.44Turley, Andrew T.; Hanson-Heine, Magnus W D; Argent, Stephen P.; Hu, Yaoyang; Jones, Thomas A.; Fay, Michael; Woodward, Simon
Catalysis enabled synthesis, structures, and reactivities of fluorinated S<sub>8</sub>-corona[<i>n</i>]arenes (<i>n</i> = 8-12).
Chemical science, 2022, 14, 70-77
1568075 CIFC56 H32 F16 O2 S8P -113.6071; 14.6029; 15.3344
97.914; 98.988; 110.147
2764.52Turley, Andrew T.; Hanson-Heine, Magnus W D; Argent, Stephen P.; Hu, Yaoyang; Jones, Thomas A.; Fay, Michael; Woodward, Simon
Catalysis enabled synthesis, structures, and reactivities of fluorinated S<sub>8</sub>-corona[<i>n</i>]arenes (<i>n</i> = 8-12).
Chemical science, 2022, 14, 70-77
1568076 CIFC56 H32 F16 S8P -19.5286; 10.3554; 14.25
75.54; 89.177; 73.34
1301.9Turley, Andrew T.; Hanson-Heine, Magnus W D; Argent, Stephen P.; Hu, Yaoyang; Jones, Thomas A.; Fay, Michael; Woodward, Simon
Catalysis enabled synthesis, structures, and reactivities of fluorinated S<sub>8</sub>-corona[<i>n</i>]arenes (<i>n</i> = 8-12).
Chemical science, 2022, 14, 70-77
1568077 CIFC54 H30 F16 N2 O2 S8P 42/n :219.8473; 19.8473; 13.1934
90; 90; 90
5197.08Turley, Andrew T.; Hanson-Heine, Magnus W D; Argent, Stephen P.; Hu, Yaoyang; Jones, Thomas A.; Fay, Michael; Woodward, Simon
Catalysis enabled synthesis, structures, and reactivities of fluorinated S<sub>8</sub>-corona[<i>n</i>]arenes (<i>n</i> = 8-12).
Chemical science, 2022, 14, 70-77
1568078 CIFC49 H17 Cl3 F16 S8P -16.7916; 13.818; 15.064
78.57; 81.39; 82.79
1363.3Turley, Andrew T.; Hanson-Heine, Magnus W D; Argent, Stephen P.; Hu, Yaoyang; Jones, Thomas A.; Fay, Michael; Woodward, Simon
Catalysis enabled synthesis, structures, and reactivities of fluorinated S<sub>8</sub>-corona[<i>n</i>]arenes (<i>n</i> = 8-12).
Chemical science, 2022, 14, 70-77
1568079 CIFC68 H36 F16 N4 S8P 1 21/c 15.89701; 32.2682; 16.4767
90; 95.0947; 90
3122.9Turley, Andrew T.; Hanson-Heine, Magnus W D; Argent, Stephen P.; Hu, Yaoyang; Jones, Thomas A.; Fay, Michael; Woodward, Simon
Catalysis enabled synthesis, structures, and reactivities of fluorinated S<sub>8</sub>-corona[<i>n</i>]arenes (<i>n</i> = 8-12).
Chemical science, 2022, 14, 70-77
1568080 CIFC70 H108 Mg2 O6P 1 21/c 116.249; 10.644; 19.0878
90; 96.071; 90
3282.8Zhao, Xue; Ratanasak, Manussada; Kon, Kazumasa; Hasegawa, Jun-Ya; Ishihara, Kazuaki
Bulky magnesium(ii) and sodium(i) bisphenoxide catalysts for chemoselective transesterification of methyl (meth)acrylates.
Chemical science, 2023, 14, 566-572
1568081 CIFC47 H78 Na2 O6C 1 2/c 113.2993; 14.9598; 23.1561
90; 92.864; 90
4601.3Zhao, Xue; Ratanasak, Manussada; Kon, Kazumasa; Hasegawa, Jun-Ya; Ishihara, Kazuaki
Bulky magnesium(ii) and sodium(i) bisphenoxide catalysts for chemoselective transesterification of methyl (meth)acrylates.
Chemical science, 2023, 14, 566-572
1568082 CIFC59.5 H56 Mo N4 OP -111.8219; 13.2826; 16.6908
93.563; 98.612; 99.221
2547.86Hegg, Alexander S.; Mercado, Brandon Q.; Miller, Alexander J. M.; Holland, Patrick L.
Catalytic reduction of dinitrogen to ammonia using molybdenum porphyrin complexes.
Faraday discussions, 2023, 243, 429-449
1568083 CIFC70 H68 Cl2 Mo N4C 1 2/c 119.8644; 25.0963; 11.9054
90; 105.033; 90
5732Hegg, Alexander S.; Mercado, Brandon Q.; Miller, Alexander J. M.; Holland, Patrick L.
Catalytic reduction of dinitrogen to ammonia using molybdenum porphyrin complexes.
Faraday discussions, 2023, 243, 429-449
1568084 CIFC68 H62 N4 O7 S2P -19.0104; 13.7067; 24.3591
84.789; 81.573; 89.49
2963.6Wang, Junjun; Li, Hao; Zhu, Yicai; Yang, Mingdi; Huang, Jing; Zhu, Xiaojiao; Yu, Zhi-Peng; Lu, Zhou; Zhou, Hongping
Unveiling upsurge of photogenerated ROS: control of intersystem crossing through tuning aggregation patterns.
Chemical science, 2023, 14, 323-330
1568085 CIFC35 H34.5 N2 O4.5 SP -19.561; 10.771; 32.42
89.714; 83.055; 76.393
3220Wang, Junjun; Li, Hao; Zhu, Yicai; Yang, Mingdi; Huang, Jing; Zhu, Xiaojiao; Yu, Zhi-Peng; Lu, Zhou; Zhou, Hongping
Unveiling upsurge of photogenerated ROS: control of intersystem crossing through tuning aggregation patterns.
Chemical science, 2023, 14, 323-330
1568086 CIFC32 H26 Au Cl N O2 PP -18.8587; 10.6137; 14.364
90.75; 90.402; 96.359
1342.1Johnson, Alice; Olelewe, Chibuzor; Kim, Jong Hyun; Northcote-Smith, Joshua; Mertens, R. Tyler; Passeri, Ginevra; Singh, Kuldip; Awuah, Samuel G.; Suntharalingam, Kogularamanan
The anti-breast cancer stem cell properties of gold(i)-non-steroidal anti-inflammatory drug complexes.
Chemical science, 2023, 14, 557-565
1568087 CIFC33 H29 Au N O2 PP -18.686; 10.558; 15.503
80.834; 74.403; 89.873
1350.7Johnson, Alice; Olelewe, Chibuzor; Kim, Jong Hyun; Northcote-Smith, Joshua; Mertens, R. Tyler; Passeri, Ginevra; Singh, Kuldip; Awuah, Samuel G.; Suntharalingam, Kogularamanan
The anti-breast cancer stem cell properties of gold(i)-non-steroidal anti-inflammatory drug complexes.
Chemical science, 2023, 14, 557-565
1568088 CIFC31 H32 Au O2 PP 1 21 113.325; 12.768; 16.802
90; 102.997; 90
2785.4Johnson, Alice; Olelewe, Chibuzor; Kim, Jong Hyun; Northcote-Smith, Joshua; Mertens, R. Tyler; Passeri, Ginevra; Singh, Kuldip; Awuah, Samuel G.; Suntharalingam, Kogularamanan
The anti-breast cancer stem cell properties of gold(i)-non-steroidal anti-inflammatory drug complexes.
Chemical science, 2023, 14, 557-565
1568089 CIFC31 H22 Au F2 O3 PP 1 21/n 111.632; 11.016; 20.856
90; 100.801; 90
2625.1Johnson, Alice; Olelewe, Chibuzor; Kim, Jong Hyun; Northcote-Smith, Joshua; Mertens, R. Tyler; Passeri, Ginevra; Singh, Kuldip; Awuah, Samuel G.; Suntharalingam, Kogularamanan
The anti-breast cancer stem cell properties of gold(i)-non-steroidal anti-inflammatory drug complexes.
Chemical science, 2023, 14, 557-565
1568090 CIFC37 H30 Au Cl N O4 PP 1 21/c 116.005; 12.135; 16.626
90; 99.248; 90
3187Johnson, Alice; Olelewe, Chibuzor; Kim, Jong Hyun; Northcote-Smith, Joshua; Mertens, R. Tyler; Passeri, Ginevra; Singh, Kuldip; Awuah, Samuel G.; Suntharalingam, Kogularamanan
The anti-breast cancer stem cell properties of gold(i)-non-steroidal anti-inflammatory drug complexes.
Chemical science, 2023, 14, 557-565
1568091 CIFC32 H28 Au O3 PP 1 21 113.2107; 12.0368; 17.3384
90; 96.519; 90
2739.23Johnson, Alice; Olelewe, Chibuzor; Kim, Jong Hyun; Northcote-Smith, Joshua; Mertens, R. Tyler; Passeri, Ginevra; Singh, Kuldip; Awuah, Samuel G.; Suntharalingam, Kogularamanan
The anti-breast cancer stem cell properties of gold(i)-non-steroidal anti-inflammatory drug complexes.
Chemical science, 2023, 14, 557-565
1568092 CIFC32 H25 Au Cl2 N O2 PP b c a11.146; 24.058; 42.262
90; 90; 90
11333Johnson, Alice; Olelewe, Chibuzor; Kim, Jong Hyun; Northcote-Smith, Joshua; Mertens, R. Tyler; Passeri, Ginevra; Singh, Kuldip; Awuah, Samuel G.; Suntharalingam, Kogularamanan
The anti-breast cancer stem cell properties of gold(i)-non-steroidal anti-inflammatory drug complexes.
Chemical science, 2023, 14, 557-565
1568093 CIFC25 H20 Au O3 PP 1 21/n 113.545; 11.373; 27.757
90; 100.052; 90
4210.3Johnson, Alice; Olelewe, Chibuzor; Kim, Jong Hyun; Northcote-Smith, Joshua; Mertens, R. Tyler; Passeri, Ginevra; Singh, Kuldip; Awuah, Samuel G.; Suntharalingam, Kogularamanan
The anti-breast cancer stem cell properties of gold(i)-non-steroidal anti-inflammatory drug complexes.
Chemical science, 2023, 14, 557-565
1568094 CIFC9 H5 F N O6 ReP -17.1094; 8.1861; 9.3662
92.147; 94.856; 90.442
542.73Karges, Johannes; Giardini, Miriam A.; Blacque, Olivier; Woodworth, Brendon; Siqueira-Neto, Jair L; Cohen, Seth M.
Enantioselective inhibition of the SARS-CoV-2 main protease with rhenium(i) picolinic acid complexes.
Chemical science, 2023, 14, 711-720
1568095 CIFC10 H8 N O7 ReP 1 21/c 111.9487; 6.8332; 16.0682
90; 108.801; 90
1241.93Karges, Johannes; Giardini, Miriam A.; Blacque, Olivier; Woodworth, Brendon; Siqueira-Neto, Jair L; Cohen, Seth M.
Enantioselective inhibition of the SARS-CoV-2 main protease with rhenium(i) picolinic acid complexes.
Chemical science, 2023, 14, 711-720
1568096 CIFC10 H8 F3 N O7.5 ReC 1 2/c 124.2151; 10.2839; 11.5557
90; 90.506; 90
2877.55Karges, Johannes; Giardini, Miriam A.; Blacque, Olivier; Woodworth, Brendon; Siqueira-Neto, Jair L; Cohen, Seth M.
Enantioselective inhibition of the SARS-CoV-2 main protease with rhenium(i) picolinic acid complexes.
Chemical science, 2023, 14, 711-720
1568097 CIFC9 H5 Cl N O6 ReI 1 2/a 19.3367; 11.1259; 22.22
90; 99.672; 90
2275.39Karges, Johannes; Giardini, Miriam A.; Blacque, Olivier; Woodworth, Brendon; Siqueira-Neto, Jair L; Cohen, Seth M.
Enantioselective inhibition of the SARS-CoV-2 main protease with rhenium(i) picolinic acid complexes.
Chemical science, 2023, 14, 711-720
1568098 CIFC9 H5 F N O6 ReP 1 21/c 110.0882; 19.6105; 12.6146
90; 112.846; 90
2299.83Karges, Johannes; Giardini, Miriam A.; Blacque, Olivier; Woodworth, Brendon; Siqueira-Neto, Jair L; Cohen, Seth M.
Enantioselective inhibition of the SARS-CoV-2 main protease with rhenium(i) picolinic acid complexes.
Chemical science, 2023, 14, 711-720
1568099 CIFC9 H5 Cl N O6 ReP 1 21/c 18.2553; 7.1514; 19.0448
90; 92.838; 90
1122.97Karges, Johannes; Giardini, Miriam A.; Blacque, Olivier; Woodworth, Brendon; Siqueira-Neto, Jair L; Cohen, Seth M.
Enantioselective inhibition of the SARS-CoV-2 main protease with rhenium(i) picolinic acid complexes.
Chemical science, 2023, 14, 711-720
1568100 CIFC10 H8 N O7 ReC 1 2/c 125.3206; 11.8306; 9.3609
90; 121.786; 90
2383.57Karges, Johannes; Giardini, Miriam A.; Blacque, Olivier; Woodworth, Brendon; Siqueira-Neto, Jair L; Cohen, Seth M.
Enantioselective inhibition of the SARS-CoV-2 main protease with rhenium(i) picolinic acid complexes.
Chemical science, 2023, 14, 711-720
1568101 CIFC10 H8 N O6 ReI 1 2/a 19.2924; 11.1464; 22.2675
90; 100.09; 90
2270.73Karges, Johannes; Giardini, Miriam A.; Blacque, Olivier; Woodworth, Brendon; Siqueira-Neto, Jair L; Cohen, Seth M.
Enantioselective inhibition of the SARS-CoV-2 main protease with rhenium(i) picolinic acid complexes.
Chemical science, 2023, 14, 711-720
1568102 CIFC10 H9 N O6.5 ReI 1 2/a 122.7527; 10.614; 21.7337
90; 109.916; 90
4934.72Karges, Johannes; Giardini, Miriam A.; Blacque, Olivier; Woodworth, Brendon; Siqueira-Neto, Jair L; Cohen, Seth M.
Enantioselective inhibition of the SARS-CoV-2 main protease with rhenium(i) picolinic acid complexes.
Chemical science, 2023, 14, 711-720
1568103 CIFC10 H10 N O7 ReC 1 2/c 124.6859; 11.4192; 9.1451
90; 97.31; 90
2556.99Karges, Johannes; Giardini, Miriam A.; Blacque, Olivier; Woodworth, Brendon; Siqueira-Neto, Jair L; Cohen, Seth M.
Enantioselective inhibition of the SARS-CoV-2 main protease with rhenium(i) picolinic acid complexes.
Chemical science, 2023, 14, 711-720
1568104 CIFC9 H5 N2 O8 ReP 1 21/c 16.7986; 18.177; 9.6514
90; 94.971; 90
1188.22Karges, Johannes; Giardini, Miriam A.; Blacque, Olivier; Woodworth, Brendon; Siqueira-Neto, Jair L; Cohen, Seth M.
Enantioselective inhibition of the SARS-CoV-2 main protease with rhenium(i) picolinic acid complexes.
Chemical science, 2023, 14, 711-720
1568105 CIFC9 H5 Cl N O6 ReP -16.3055; 9.8069; 10.5545
102.051; 100.494; 105.893
593.68Karges, Johannes; Giardini, Miriam A.; Blacque, Olivier; Woodworth, Brendon; Siqueira-Neto, Jair L; Cohen, Seth M.
Enantioselective inhibition of the SARS-CoV-2 main protease with rhenium(i) picolinic acid complexes.
Chemical science, 2023, 14, 711-720
1568106 CIFC10 H5 F3 N O6 ReP -16.4225; 10.7862; 18.6703
83.339; 85.503; 79.429
1260.68Karges, Johannes; Giardini, Miriam A.; Blacque, Olivier; Woodworth, Brendon; Siqueira-Neto, Jair L; Cohen, Seth M.
Enantioselective inhibition of the SARS-CoV-2 main protease with rhenium(i) picolinic acid complexes.
Chemical science, 2023, 14, 711-720
1568107 CIFC9 H9 N2 O7 ReC 1 2/c 124.23071; 11.28656; 8.98742
90; 98.0757; 90
2433.52Karges, Johannes; Giardini, Miriam A.; Blacque, Olivier; Woodworth, Brendon; Siqueira-Neto, Jair L; Cohen, Seth M.
Enantioselective inhibition of the SARS-CoV-2 main protease with rhenium(i) picolinic acid complexes.
Chemical science, 2023, 14, 711-720
1568108 CIFC9 H7 N O7.5 ReP -19.8967; 10.5952; 12.8653
106.448; 105.596; 103.191
1176.62Karges, Johannes; Giardini, Miriam A.; Blacque, Olivier; Woodworth, Brendon; Siqueira-Neto, Jair L; Cohen, Seth M.
Enantioselective inhibition of the SARS-CoV-2 main protease with rhenium(i) picolinic acid complexes.
Chemical science, 2023, 14, 711-720
1568109 CIFC9 H7 N2 O9 ReP 1 21/n 16.4668; 24.4678; 8.2183
90; 102.605; 90
1269.03Karges, Johannes; Giardini, Miriam A.; Blacque, Olivier; Woodworth, Brendon; Siqueira-Neto, Jair L; Cohen, Seth M.
Enantioselective inhibition of the SARS-CoV-2 main protease with rhenium(i) picolinic acid complexes.
Chemical science, 2023, 14, 711-720
1568110 CIFC18 H16 N4 O13 Re2P -110.5868; 13.477; 18.0923
82.284; 87.527; 68.815
2385.09Karges, Johannes; Giardini, Miriam A.; Blacque, Olivier; Woodworth, Brendon; Siqueira-Neto, Jair L; Cohen, Seth M.
Enantioselective inhibition of the SARS-CoV-2 main protease with rhenium(i) picolinic acid complexes.
Chemical science, 2023, 14, 711-720
1568111 CIFC10 H10 N O8 ReI 1 2/a 18.8821; 11.136; 26.399
90; 93.457; 90
2606.4Karges, Johannes; Giardini, Miriam A.; Blacque, Olivier; Woodworth, Brendon; Siqueira-Neto, Jair L; Cohen, Seth M.
Enantioselective inhibition of the SARS-CoV-2 main protease with rhenium(i) picolinic acid complexes.
Chemical science, 2023, 14, 711-720
1568112 CIFC10 H5 F3 N O6 ReP 1 21/n 112.926; 6.8177; 15.2153
90; 112.206; 90
1241.41Karges, Johannes; Giardini, Miriam A.; Blacque, Olivier; Woodworth, Brendon; Siqueira-Neto, Jair L; Cohen, Seth M.
Enantioselective inhibition of the SARS-CoV-2 main protease with rhenium(i) picolinic acid complexes.
Chemical science, 2023, 14, 711-720
1568113 CIFC10 H6 N O8 ReP 1 21/c 110.5413; 6.8478; 17.1068
90; 103.515; 90
1200.65Karges, Johannes; Giardini, Miriam A.; Blacque, Olivier; Woodworth, Brendon; Siqueira-Neto, Jair L; Cohen, Seth M.
Enantioselective inhibition of the SARS-CoV-2 main protease with rhenium(i) picolinic acid complexes.
Chemical science, 2023, 14, 711-720
1568114 CIFC10 H10 N O8 ReC 1 2/c 124.6135; 11.2159; 9.5651
90; 94.071; 90
2633.9Karges, Johannes; Giardini, Miriam A.; Blacque, Olivier; Woodworth, Brendon; Siqueira-Neto, Jair L; Cohen, Seth M.
Enantioselective inhibition of the SARS-CoV-2 main protease with rhenium(i) picolinic acid complexes.
Chemical science, 2023, 14, 711-720
1568115 CIFC9.5 H7 F N O6.5 ReP -19.7973; 10.6398; 12.744
78.502; 68.184; 73.235
1174.53Karges, Johannes; Giardini, Miriam A.; Blacque, Olivier; Woodworth, Brendon; Siqueira-Neto, Jair L; Cohen, Seth M.
Enantioselective inhibition of the SARS-CoV-2 main protease with rhenium(i) picolinic acid complexes.
Chemical science, 2023, 14, 711-720
1568116 CIFC10 H10 N O7 ReI 1 2/a 19.1881; 11.0679; 25.0097
90; 97.989; 90
2518.63Karges, Johannes; Giardini, Miriam A.; Blacque, Olivier; Woodworth, Brendon; Siqueira-Neto, Jair L; Cohen, Seth M.
Enantioselective inhibition of the SARS-CoV-2 main protease with rhenium(i) picolinic acid complexes.
Chemical science, 2023, 14, 711-720
1568117 CIFC27 H17 N6 O25 Re3P 1 21/c 112.1358; 18.6012; 16.1266
90; 90.297; 90
3640.38Karges, Johannes; Giardini, Miriam A.; Blacque, Olivier; Woodworth, Brendon; Siqueira-Neto, Jair L; Cohen, Seth M.
Enantioselective inhibition of the SARS-CoV-2 main protease with rhenium(i) picolinic acid complexes.
Chemical science, 2023, 14, 711-720
1568118 CIFC10 H8 N2 O7.5 ReP -110.938; 11.4782; 12.8234
101.726; 111.1; 109.637
1314.84Karges, Johannes; Giardini, Miriam A.; Blacque, Olivier; Woodworth, Brendon; Siqueira-Neto, Jair L; Cohen, Seth M.
Enantioselective inhibition of the SARS-CoV-2 main protease with rhenium(i) picolinic acid complexes.
Chemical science, 2023, 14, 711-720
1568119 CIFC9 H7 F N O7 ReI 1 2/a 19.0438; 11.1598; 23.9385
90; 96.213; 90
2401.85Karges, Johannes; Giardini, Miriam A.; Blacque, Olivier; Woodworth, Brendon; Siqueira-Neto, Jair L; Cohen, Seth M.
Enantioselective inhibition of the SARS-CoV-2 main protease with rhenium(i) picolinic acid complexes.
Chemical science, 2023, 14, 711-720
1568120 CIFC9 H6 N O7 ReP -17.2397; 8.0044; 9.5362
88.048; 76.353; 84.465
534.48Karges, Johannes; Giardini, Miriam A.; Blacque, Olivier; Woodworth, Brendon; Siqueira-Neto, Jair L; Cohen, Seth M.
Enantioselective inhibition of the SARS-CoV-2 main protease with rhenium(i) picolinic acid complexes.
Chemical science, 2023, 14, 711-720
1568121 CIFC10 H5 N2 O6 ReP 1 21/c 110.3332; 6.6448; 17.7601
90; 102.862; 90
1188.85Karges, Johannes; Giardini, Miriam A.; Blacque, Olivier; Woodworth, Brendon; Siqueira-Neto, Jair L; Cohen, Seth M.
Enantioselective inhibition of the SARS-CoV-2 main protease with rhenium(i) picolinic acid complexes.
Chemical science, 2023, 14, 711-720
1568122 CIFC9 H5 Cl N O6 ReC 1 2/c 122.88; 9.9814; 20.3649
90; 91.591; 90
4649.03Karges, Johannes; Giardini, Miriam A.; Blacque, Olivier; Woodworth, Brendon; Siqueira-Neto, Jair L; Cohen, Seth M.
Enantioselective inhibition of the SARS-CoV-2 main protease with rhenium(i) picolinic acid complexes.
Chemical science, 2023, 14, 711-720
1568123 CIFC11 H17 Al N Na OP 1 21/c 19.5855; 11.0763; 13.1896
90; 99.386; 90
1381.62Damián, Jesús; Rentero, Christian; Echeverría, Jorge; Mosquera, Marta E. G.
Alkali metal⋯methyl short contacts in aluminates: more than agostic interactions.
Faraday discussions, 2023, 244, 294-305
1568124 CIFC18 H36 Br2 Eu N2 O6P 21 21 213.6795; 17.7174; 9.9143
90; 90; 90
2402.88Yu, Gang; Liu, Huanyu; Yan, Wenchao; Guo, Ruoyao; Wu, Aoben; Zhao, Zifeng; Liu, Zhiwei; Bian, Zuqiang
4f → 3d sensitization: a luminescent Eu<sup>II</sup>-Mn<sup>II</sup> heteronuclear complex with a near-unity quantum yield.
Materials horizons, 2023, 10, 625-631
1568125 CIFC20.65 H45.3 Br4 Eu Mn N2 O8P 1 21/n 116.7005; 11.9358; 16.9034
90; 108.602; 90
3193.4Yu, Gang; Liu, Huanyu; Yan, Wenchao; Guo, Ruoyao; Wu, Aoben; Zhao, Zifeng; Liu, Zhiwei; Bian, Zuqiang
4f → 3d sensitization: a luminescent Eu<sup>II</sup>-Mn<sup>II</sup> heteronuclear complex with a near-unity quantum yield.
Materials horizons, 2023, 10, 625-631
1568126 CIFC20 H45.11 Br2.89 Mn N2 O9.11 SrP 1 21/n 111.5435; 20.2186; 13.5459
90; 91.42; 90
3160.55Yu, Gang; Liu, Huanyu; Yan, Wenchao; Guo, Ruoyao; Wu, Aoben; Zhao, Zifeng; Liu, Zhiwei; Bian, Zuqiang
4f → 3d sensitization: a luminescent Eu<sup>II</sup>-Mn<sup>II</sup> heteronuclear complex with a near-unity quantum yield.
Materials horizons, 2023, 10, 625-631
1568127 CIFC20 H44 Br4 Eu N2 O8 ZnP 1 21/c 114.04743; 14.65564; 31.3669
90; 102.744; 90
6298.56Yu, Gang; Liu, Huanyu; Yan, Wenchao; Guo, Ruoyao; Wu, Aoben; Zhao, Zifeng; Liu, Zhiwei; Bian, Zuqiang
4f → 3d sensitization: a luminescent Eu<sup>II</sup>-Mn<sup>II</sup> heteronuclear complex with a near-unity quantum yield.
Materials horizons, 2023, 10, 625-631
1568128 CIFCd Rb2 S10 Si4P n a 2118.6378; 9.1309; 10.6136
90; 90; 90
1806.22Zhou, Jiazheng; Fan, Zhongxu; Zhang, Kewang; Yang, Zhihua; Pan, Shilie; Li, Junjie
Rb<sub>2</sub>CdSi<sub>4</sub>S<sub>10</sub>: novel [Si<sub>4</sub>S<sub>10</sub>] T2-supertetrahedra-contained infrared nonlinear optical material with large band gap.
Materials horizons, 2023, 10, 619-624
1568129 CIFC44 H44 N2P -17.4324; 14.6018; 16.6369
109.684; 98.078; 93.683
1671.1Kou, Yan; Li, Guangwu; Han, Yi; Li, Mengwei; Wang, Tingting; Qu, Zhiyu; Chen, Yulan
Angularly fused diaza-dinaphthopyrenes: regio-selective synthesis, crystal structures and isomer-dependent mechanochromic fluorescent properties.
Chemical science, 2023, 14, 668-674
1568130 CIFC22 H22 NP 1 21/n 15.438; 17.7484; 19.3921
90; 91.455; 90
1871.04Kou, Yan; Li, Guangwu; Han, Yi; Li, Mengwei; Wang, Tingting; Qu, Zhiyu; Chen, Yulan
Angularly fused diaza-dinaphthopyrenes: regio-selective synthesis, crystal structures and isomer-dependent mechanochromic fluorescent properties.
Chemical science, 2023, 14, 668-674
1568131 CIFC8 H8 N2 O3 SP 1 21/n 18.2861; 5.4731; 20.821
90; 93.606; 90
942.4Lasso, Juan D.; Castillo-Pazos, Durbis J; Sim, Malcolm; Barroso-Flores, Joaquín; Li, Chao-Jun
EDA mediated S-N bond coupling of nitroarenes and sodium sulfinate salts.
Chemical science, 2023, 14, 525-532
1568132 CIFC388 H430 Ag18 Cu8 F24 O4 P8 Sb4P -120.8417; 21.4892; 23.9061
86.621; 66.127; 71.885
9277.9Sun, Xueli; Tang, Xiongkai; Gao, Yan-Li; Zhao, Yujuan; Wu, Qingyuan; Cao, Dongxu; Shen, Hui
An atomically precise Ag<sub>18</sub>Cu<sub>8</sub> nanocluster with rich alkynyl-metal coordination structures and unique SbF<sub>6</sub><sup>-</sup> assembling modes.
Nanoscale, 2023, 15, 2316-2322
1568133 CIFC46 H74 Ir4 UC 1 2/c 114.8239; 21.1789; 17.2427
90; 107.318; 90
5168Ye, Christopher Z.; Del Rosal, Iker; Boreen, Michael A.; Ouellette, Erik T.; Russo, Dominic R.; Maron, Laurent; Arnold, John; Camp, Clément
A versatile strategy for the formation of hydride-bridged actinide-iridium multimetallics.
Chemical science, 2023, 14, 861-868
1568134 CIFC40 H60 Ir4 ThP 1 21/n 113.6424; 19.07; 17.52
90; 102.339; 90
4452.7Ye, Christopher Z.; Del Rosal, Iker; Boreen, Michael A.; Ouellette, Erik T.; Russo, Dominic R.; Maron, Laurent; Arnold, John; Camp, Clément
A versatile strategy for the formation of hydride-bridged actinide-iridium multimetallics.
Chemical science, 2023, 14, 861-868
1568135 CIFC60 H90 Ir6 U2P -112.0833; 15.2848; 18.5723
93.815; 98.607; 93.365
3375.78Ye, Christopher Z.; Del Rosal, Iker; Boreen, Michael A.; Ouellette, Erik T.; Russo, Dominic R.; Maron, Laurent; Arnold, John; Camp, Clément
A versatile strategy for the formation of hydride-bridged actinide-iridium multimetallics.
Chemical science, 2023, 14, 861-868
1568136 CIFCu4 Na4.39 O Se4I 4/m11.232; 11.232; 4.0301
90; 90; 90
508.43Zhou, Xiuquan; Kolluru, Venkata Surya Chaitanya; Xu, Wenqian; Wang, Luqing; Chang, Tieyan; Chen, Yu-Sheng; Yu, Lei; Wen, Jianguo; Chan, Maria K. Y.; Chung, Duck Young; Kanatzidis, Mercouri G.
Discovery of chalcogenides structures and compositions using mixed fluxes
Nature, 2022, 612, 72-77
1568137 CIFCu11.19 Na10.21 O2 Se10C 1 2/m 115.772; 4.0654; 20.828
90; 110.33; 90
1252.3Zhou, Xiuquan; Kolluru, Venkata Surya Chaitanya; Xu, Wenqian; Wang, Luqing; Chang, Tieyan; Chen, Yu-Sheng; Yu, Lei; Wen, Jianguo; Chan, Maria K. Y.; Chung, Duck Young; Kanatzidis, Mercouri G.
Discovery of chalcogenides structures and compositions using mixed fluxes
Nature, 2022, 612, 72-77
1568138 CIFCu7.7 Na5.3 O Se6C 1 2/m 115.714; 4.0699; 11.643
90; 93.15; 90
743.5Zhou, Xiuquan; Kolluru, Venkata Surya Chaitanya; Xu, Wenqian; Wang, Luqing; Chang, Tieyan; Chen, Yu-Sheng; Yu, Lei; Wen, Jianguo; Chan, Maria K. Y.; Chung, Duck Young; Kanatzidis, Mercouri G.
Discovery of chalcogenides structures and compositions using mixed fluxes
Nature, 2022, 612, 72-77
1568139 CIFCu4 Na4.55 O S4I 4/m10.9081; 10.9081; 3.886
90; 90; 90
462.38Zhou, Xiuquan; Kolluru, Venkata Surya Chaitanya; Xu, Wenqian; Wang, Luqing; Chang, Tieyan; Chen, Yu-Sheng; Yu, Lei; Wen, Jianguo; Chan, Maria K. Y.; Chung, Duck Young; Kanatzidis, Mercouri G.
Discovery of chalcogenides structures and compositions using mixed fluxes
Nature, 2022, 612, 72-77
1568140 CIFCu3 Na S2R -3 m :H3.936; 3.936; 22.003
90; 90; 120
295.2Zhou, Xiuquan; Kolluru, Venkata Surya Chaitanya; Xu, Wenqian; Wang, Luqing; Chang, Tieyan; Chen, Yu-Sheng; Yu, Lei; Wen, Jianguo; Chan, Maria K. Y.; Chung, Duck Young; Kanatzidis, Mercouri G.
Discovery of chalcogenides structures and compositions using mixed fluxes
Nature, 2022, 612, 72-77
1568141 CIFCu11.4 Na9.74 O2 S10P 1 2/c 120.388; 7.7841; 15.311
90; 110.9; 90
2270Zhou, Xiuquan; Kolluru, Venkata Surya Chaitanya; Xu, Wenqian; Wang, Luqing; Chang, Tieyan; Chen, Yu-Sheng; Yu, Lei; Wen, Jianguo; Chan, Maria K. Y.; Chung, Duck Young; Kanatzidis, Mercouri G.
Discovery of chalcogenides structures and compositions using mixed fluxes
Nature, 2022, 612, 72-77
1568142 CIFCu7.43 Na5.34 O S6C 1 2/m 115.278; 3.9247; 11.324
90; 91.89; 90
678.6Zhou, Xiuquan; Kolluru, Venkata Surya Chaitanya; Xu, Wenqian; Wang, Luqing; Chang, Tieyan; Chen, Yu-Sheng; Yu, Lei; Wen, Jianguo; Chan, Maria K. Y.; Chung, Duck Young; Kanatzidis, Mercouri G.
Discovery of chalcogenides structures and compositions using mixed fluxes
Nature, 2022, 612, 72-77
1568143 CIFCu3.52 K4.33 O0.88 Se4I 4/m12.335; 12.335; 4.433
90; 90; 90
674.5Zhou, Xiuquan; Kolluru, Venkata Surya Chaitanya; Xu, Wenqian; Wang, Luqing; Chang, Tieyan; Chen, Yu-Sheng; Yu, Lei; Wen, Jianguo; Chan, Maria K. Y.; Chung, Duck Young; Kanatzidis, Mercouri G.
Discovery of chalcogenides structures and compositions using mixed fluxes
Nature, 2022, 612, 72-77
1568144 CIFCu2.78 Na0.84 Se2C 1 2/m 17.0555; 4.0808; 7.9345
90; 108.39; 90
216.78Zhou, Xiuquan; Kolluru, Venkata Surya Chaitanya; Xu, Wenqian; Wang, Luqing; Chang, Tieyan; Chen, Yu-Sheng; Yu, Lei; Wen, Jianguo; Chan, Maria K. Y.; Chung, Duck Young; Kanatzidis, Mercouri G.
Discovery of chalcogenides structures and compositions using mixed fluxes
Nature, 2022, 612, 72-77
1568145 CIFCu0.59 Li0.42 Na SP 4/n m m :23.9745; 3.9745; 6.548
90; 90; 90
103.44Zhou, Xiuquan; Kolluru, Venkata Surya Chaitanya; Xu, Wenqian; Wang, Luqing; Chang, Tieyan; Chen, Yu-Sheng; Yu, Lei; Wen, Jianguo; Chan, Maria K. Y.; Chung, Duck Young; Kanatzidis, Mercouri G.
Discovery of chalcogenides structures and compositions using mixed fluxes
Nature, 2022, 612, 72-77
1568146 CIFCu0.65 Li0.35 Na SeP 4/n m m :24.1307; 4.1307; 6.815
90; 90; 90
116.28Zhou, Xiuquan; Kolluru, Venkata Surya Chaitanya; Xu, Wenqian; Wang, Luqing; Chang, Tieyan; Chen, Yu-Sheng; Yu, Lei; Wen, Jianguo; Chan, Maria K. Y.; Chung, Duck Young; Kanatzidis, Mercouri G.
Discovery of chalcogenides structures and compositions using mixed fluxes
Nature, 2022, 612, 72-77
1568147 CIFBa Cu1.42 Li0.58 S2I 4 m m3.9191; 3.9191; 12.677
90; 90; 90
194.71Zhou, Xiuquan; Kolluru, Venkata Surya Chaitanya; Xu, Wenqian; Wang, Luqing; Chang, Tieyan; Chen, Yu-Sheng; Yu, Lei; Wen, Jianguo; Chan, Maria K. Y.; Chung, Duck Young; Kanatzidis, Mercouri G.
Discovery of chalcogenides structures and compositions using mixed fluxes
Nature, 2022, 612, 72-77
1568148 CIFBa9 Cu13.46 Na4 O8 S12I 4/m20.247; 20.247; 3.9958
90; 90; 90
1638Zhou, Xiuquan; Kolluru, Venkata Surya Chaitanya; Xu, Wenqian; Wang, Luqing; Chang, Tieyan; Chen, Yu-Sheng; Yu, Lei; Wen, Jianguo; Chan, Maria K. Y.; Chung, Duck Young; Kanatzidis, Mercouri G.
Discovery of chalcogenides structures and compositions using mixed fluxes
Nature, 2022, 612, 72-77
1568149 CIFBa0.44 Cu2.02 Rb0.56 Se2I 4/m m m4.0442; 4.0442; 13.357
90; 90; 90
218.46Zhou, Xiuquan; Kolluru, Venkata Surya Chaitanya; Xu, Wenqian; Wang, Luqing; Chang, Tieyan; Chen, Yu-Sheng; Yu, Lei; Wen, Jianguo; Chan, Maria K. Y.; Chung, Duck Young; Kanatzidis, Mercouri G.
Discovery of chalcogenides structures and compositions using mixed fluxes
Nature, 2022, 612, 72-77
1568150 CIFBa1.89 Cu13.92 Na6 S12C 1 2/m 17.1315; 12.365; 14.892
90; 99.15; 90
1296.5Zhou, Xiuquan; Kolluru, Venkata Surya Chaitanya; Xu, Wenqian; Wang, Luqing; Chang, Tieyan; Chen, Yu-Sheng; Yu, Lei; Wen, Jianguo; Chan, Maria K. Y.; Chung, Duck Young; Kanatzidis, Mercouri G.
Discovery of chalcogenides structures and compositions using mixed fluxes
Nature, 2022, 612, 72-77
1568151 CIFBa Cu7 K3 S6C 1 2/m 17.2499; 12.4798; 8.3691
90; 106.647; 90
725.48Zhou, Xiuquan; Kolluru, Venkata Surya Chaitanya; Xu, Wenqian; Wang, Luqing; Chang, Tieyan; Chen, Yu-Sheng; Yu, Lei; Wen, Jianguo; Chan, Maria K. Y.; Chung, Duck Young; Kanatzidis, Mercouri G.
Discovery of chalcogenides structures and compositions using mixed fluxes
Nature, 2022, 612, 72-77
1568152 CIFBa2 Cu2 Na1.24 O1.25 S3C 1 2/m 122.188; 4.2597; 17.111
90; 91.544; 90
1616.6Zhou, Xiuquan; Kolluru, Venkata Surya Chaitanya; Xu, Wenqian; Wang, Luqing; Chang, Tieyan; Chen, Yu-Sheng; Yu, Lei; Wen, Jianguo; Chan, Maria K. Y.; Chung, Duck Young; Kanatzidis, Mercouri G.
Discovery of chalcogenides structures and compositions using mixed fluxes
Nature, 2022, 612, 72-77
1568153 CIFBa1.89 Cu5.56 O Se4P n m a19.354; 4.2315; 12.261
90; 90; 90
1004.1Zhou, Xiuquan; Kolluru, Venkata Surya Chaitanya; Xu, Wenqian; Wang, Luqing; Chang, Tieyan; Chen, Yu-Sheng; Yu, Lei; Wen, Jianguo; Chan, Maria K. Y.; Chung, Duck Young; Kanatzidis, Mercouri G.
Discovery of chalcogenides structures and compositions using mixed fluxes
Nature, 2022, 612, 72-77
1568154 CIFBa2 Cu2.8 O2 Se2I 4/m m m4.1491; 4.1491; 19.594
90; 90; 90
337.31Zhou, Xiuquan; Kolluru, Venkata Surya Chaitanya; Xu, Wenqian; Wang, Luqing; Chang, Tieyan; Chen, Yu-Sheng; Yu, Lei; Wen, Jianguo; Chan, Maria K. Y.; Chung, Duck Young; Kanatzidis, Mercouri G.
Discovery of chalcogenides structures and compositions using mixed fluxes
Nature, 2022, 612, 72-77
1568155 CIFBa2 Cu2 Na0.55 O2 Se2I 4/m m m4.2049; 4.2049; 19.231
90; 90; 90
340.03Zhou, Xiuquan; Kolluru, Venkata Surya Chaitanya; Xu, Wenqian; Wang, Luqing; Chang, Tieyan; Chen, Yu-Sheng; Yu, Lei; Wen, Jianguo; Chan, Maria K. Y.; Chung, Duck Young; Kanatzidis, Mercouri G.
Discovery of chalcogenides structures and compositions using mixed fluxes
Nature, 2022, 612, 72-77
1568156 CIFBa1.59 Cu1.92 K0.41 O1.86 Se2I 4 m m4.2047; 4.2047; 19.346
90; 90; 90
342.03Zhou, Xiuquan; Kolluru, Venkata Surya Chaitanya; Xu, Wenqian; Wang, Luqing; Chang, Tieyan; Chen, Yu-Sheng; Yu, Lei; Wen, Jianguo; Chan, Maria K. Y.; Chung, Duck Young; Kanatzidis, Mercouri G.
Discovery of chalcogenides structures and compositions using mixed fluxes
Nature, 2022, 612, 72-77
1568157 CIFBa2 Cu1.79 O3 SP 4/n m m :24.0099; 4.0099; 16.532
90; 90; 90
265.82Zhou, Xiuquan; Kolluru, Venkata Surya Chaitanya; Xu, Wenqian; Wang, Luqing; Chang, Tieyan; Chen, Yu-Sheng; Yu, Lei; Wen, Jianguo; Chan, Maria K. Y.; Chung, Duck Young; Kanatzidis, Mercouri G.
Discovery of chalcogenides structures and compositions using mixed fluxes
Nature, 2022, 612, 72-77
1568158 CIFBa0.63 Cu1.83 K0.87 S0.9 Se1.1P b a m7.483; 16.0919; 4.1041
90; 90; 90
494.2Zhou, Xiuquan; Kolluru, Venkata Surya Chaitanya; Xu, Wenqian; Wang, Luqing; Chang, Tieyan; Chen, Yu-Sheng; Yu, Lei; Wen, Jianguo; Chan, Maria K. Y.; Chung, Duck Young; Kanatzidis, Mercouri G.
Discovery of chalcogenides structures and compositions using mixed fluxes
Nature, 2022, 612, 72-77
1568159 CIFCu10 K2 Se6P 42/m n m12.9183; 12.9183; 4.0117
90; 90; 90
669.48Zhou, Xiuquan; Kolluru, Venkata Surya Chaitanya; Xu, Wenqian; Wang, Luqing; Chang, Tieyan; Chen, Yu-Sheng; Yu, Lei; Wen, Jianguo; Chan, Maria K. Y.; Chung, Duck Young; Kanatzidis, Mercouri G.
Discovery of chalcogenides structures and compositions using mixed fluxes
Nature, 2022, 612, 72-77
1568160 CIFCu6.09 Rb Se4I 4/m10.561; 10.561; 3.974
90; 90; 90
443.24Zhou, Xiuquan; Kolluru, Venkata Surya Chaitanya; Xu, Wenqian; Wang, Luqing; Chang, Tieyan; Chen, Yu-Sheng; Yu, Lei; Wen, Jianguo; Chan, Maria K. Y.; Chung, Duck Young; Kanatzidis, Mercouri G.
Discovery of chalcogenides structures and compositions using mixed fluxes
Nature, 2022, 612, 72-77
1568161 CIFBa4 Cu12 Rb6 Se13I m -312.1735; 12.1735; 12.1735
90; 90; 90
1804.04Zhou, Xiuquan; Kolluru, Venkata Surya Chaitanya; Xu, Wenqian; Wang, Luqing; Chang, Tieyan; Chen, Yu-Sheng; Yu, Lei; Wen, Jianguo; Chan, Maria K. Y.; Chung, Duck Young; Kanatzidis, Mercouri G.
Discovery of chalcogenides structures and compositions using mixed fluxes
Nature, 2022, 612, 72-77
1568162 CIFCu7.66 Na6 Se8P b a m7.417; 15.192; 3.9244
90; 90; 90
442.2Zhou, Xiuquan; Kolluru, Venkata Surya Chaitanya; Xu, Wenqian; Wang, Luqing; Chang, Tieyan; Chen, Yu-Sheng; Yu, Lei; Wen, Jianguo; Chan, Maria K. Y.; Chung, Duck Young; Kanatzidis, Mercouri G.
Discovery of chalcogenides structures and compositions using mixed fluxes
Nature, 2022, 612, 72-77
1568163 CIFBa Cu7 K3 S6C 1 2/m 17.2523; 12.4863; 8.3687
90; 106.661; 90
726.01Zhou, Xiuquan; Kolluru, Venkata Surya Chaitanya; Xu, Wenqian; Wang, Luqing; Chang, Tieyan; Chen, Yu-Sheng; Yu, Lei; Wen, Jianguo; Chan, Maria K. Y.; Chung, Duck Young; Kanatzidis, Mercouri G.
Discovery of chalcogenides structures and compositions using mixed fluxes
Nature, 2022, 612, 72-77
1568164 CIFC24 H24 S SiP 1 21 19.1046; 7.8073; 15.404
90; 101.618; 90
1072.52Ling, Fang-Ying; Ye, Fei; Fang, Xiao-Jun; Zhou, Xiao-Hua; Huang, Wei-Sheng; Xu, Zheng; Xu, Li-Wen
An unusual autocatalysis with an air-stable Pd complex to promote enantioselective synthesis of Si-stereogenic enynes.
Chemical science, 2023, 14, 1123-1131
1568165 CIFC256 H432 Fe4 N28 O186 S12R 3 :H22.1273; 22.1273; 62.674
90; 90; 120
26575Schwab, Jake H.; Bailey, Jake B.; Gembicky, Milan; Stauber, Julia M.
Programmable synthesis of well-defined, glycosylated iron(ii) supramolecular assemblies with multivalent protein-binding capabilities.
Chemical science, 2023, 14, 1018-1026
1568166 CIFC33.5 H28 O6P 1 21/n 117.659; 8.3859; 17.8047
90; 92.68; 90
2633.75Vieira de Castro, Tomás; Huang, David M.; Sumby, Christopher J.; Lawrence, Andrew L.; George, Jonathan H.
A bioinspired, one-step total synthesis of peshawaraquinone.
Chemical science, 2023, 14, 950-954
1568167 CIFC42 H56 N10C 1 c 120.621; 16.428; 11.715
90; 93.68; 90
3960.4Dalhoff, Rosalie; Schmidt, Regina; Steeb, Lena; Rabatinova, Kristina; Witte, Matthias; Teeuwen, Simon; Benjamaâ, Salim; Hüppe, Henrika; Hoffmann, Alexander; Herres-Pawlis, Sonja
The bridge towards a more stable and active side-on-peroxido (Cu<sub>2</sub><sup>II</sup>(µ-η<sup>2</sup>:η<sup>2</sup>-O<sub>2</sub>)) complex as a tyrosinase model system.
Faraday discussions, 2023, 244, 134-153
1568168 CIFC42 H56 Br2 Cu2 N10P -115.937; 16.75; 17.048
89.73; 86.39; 86.79
4534.7Dalhoff, Rosalie; Schmidt, Regina; Steeb, Lena; Rabatinova, Kristina; Witte, Matthias; Teeuwen, Simon; Benjamaâ, Salim; Hüppe, Henrika; Hoffmann, Alexander; Herres-Pawlis, Sonja
The bridge towards a more stable and active side-on-peroxido (Cu<sub>2</sub><sup>II</sup>(µ-η<sup>2</sup>:η<sup>2</sup>-O<sub>2</sub>)) complex as a tyrosinase model system.
Faraday discussions, 2023, 244, 134-153
1568169 CIFC42 H56 Cu2 I2 N10P -115.889; 17.074; 17.838
90.35; 93.73; 92.86
4823Dalhoff, Rosalie; Schmidt, Regina; Steeb, Lena; Rabatinova, Kristina; Witte, Matthias; Teeuwen, Simon; Benjamaâ, Salim; Hüppe, Henrika; Hoffmann, Alexander; Herres-Pawlis, Sonja
The bridge towards a more stable and active side-on-peroxido (Cu<sub>2</sub><sup>II</sup>(µ-η<sup>2</sup>:η<sup>2</sup>-O<sub>2</sub>)) complex as a tyrosinase model system.
Faraday discussions, 2023, 244, 134-153
1568170 CIFC42 H56 Cu2 F12 N10 O2 Sb2P 1 21/c 117.15; 20.445; 18.975
90; 109; 90
6291Dalhoff, Rosalie; Schmidt, Regina; Steeb, Lena; Rabatinova, Kristina; Witte, Matthias; Teeuwen, Simon; Benjamaâ, Salim; Hüppe, Henrika; Hoffmann, Alexander; Herres-Pawlis, Sonja
The bridge towards a more stable and active side-on-peroxido (Cu<sub>2</sub><sup>II</sup>(µ-η<sup>2</sup>:η<sup>2</sup>-O<sub>2</sub>)) complex as a tyrosinase model system.
Faraday discussions, 2023, 244, 134-153
1568171 CIFC48 H62 Cu2 F6 N12 O6 S2P 1 21/c 113.994; 13.812; 15.483
90; 109.81; 90
2815.5Dalhoff, Rosalie; Schmidt, Regina; Steeb, Lena; Rabatinova, Kristina; Witte, Matthias; Teeuwen, Simon; Benjamaâ, Salim; Hüppe, Henrika; Hoffmann, Alexander; Herres-Pawlis, Sonja
The bridge towards a more stable and active side-on-peroxido (Cu<sub>2</sub><sup>II</sup>(µ-η<sup>2</sup>:η<sup>2</sup>-O<sub>2</sub>)) complex as a tyrosinase model system.
Faraday discussions, 2023, 244, 134-153
1568172 CIFC42 H56 Cl2 Cu2 N10P -116.007; 16.568; 16.63
89.47; 86.66; 87.22
4397.6Dalhoff, Rosalie; Schmidt, Regina; Steeb, Lena; Rabatinova, Kristina; Witte, Matthias; Teeuwen, Simon; Benjamaâ, Salim; Hüppe, Henrika; Hoffmann, Alexander; Herres-Pawlis, Sonja
The bridge towards a more stable and active side-on-peroxido (Cu<sub>2</sub><sup>II</sup>(µ-η<sup>2</sup>:η<sup>2</sup>-O<sub>2</sub>)) complex as a tyrosinase model system.
Faraday discussions, 2023, 244, 134-153
1568173 CIFC48 H66 Cl4 Cu2 F12 N12 P2P 1 21/n 111.656; 15.29; 17.087
90; 91.29; 90
3044.5Dalhoff, Rosalie; Schmidt, Regina; Steeb, Lena; Rabatinova, Kristina; Witte, Matthias; Teeuwen, Simon; Benjamaâ, Salim; Hüppe, Henrika; Hoffmann, Alexander; Herres-Pawlis, Sonja
The bridge towards a more stable and active side-on-peroxido (Cu<sub>2</sub><sup>II</sup>(µ-η<sup>2</sup>:η<sup>2</sup>-O<sub>2</sub>)) complex as a tyrosinase model system.
Faraday discussions, 2023, 244, 134-153
1568174 CIFC35 H28 O11 PP 21 21 2113.6884; 17.0653; 28.5141
90; 90; 90
6660.8Jiang, Yixuan; Huang, Zeng; Tian, Jun; Dong, Xin; Yu, Xiao-Qi; Yu, Shanshan
A chiral BINOL-based supramolecular gel enabling sensitive enantioselective and chemoselective collapse toward histidine.
Soft matter, 2023, 19, 430-435
1568175 CIFC46 H34 F N O2 SP 1 21/n 18.1805; 16.2254; 25.9415
90; 90.036; 90
3443.3Zhao, Chenyue; Ding, Zhipeng; Zhang, Yibin; Ni, Zhigang; Li, Shijun; Gong, Shaolong; Zou, Bo; Wang, Kai; Yu, Ling
Thermally activated delayed fluorescence with dual-emission and pressure-induced bidirectional shifting: cooperative effects of intramolecular and intermolecular energy transfer.
Chemical science, 2023, 14, 1089-1096
1568176 CIFC43 H28 F N O3 SP 1 21/c 111.6223; 22.3952; 13.154
90; 101.844; 90
3350.9Zhao, Chenyue; Ding, Zhipeng; Zhang, Yibin; Ni, Zhigang; Li, Shijun; Gong, Shaolong; Zou, Bo; Wang, Kai; Yu, Ling
Thermally activated delayed fluorescence with dual-emission and pressure-induced bidirectional shifting: cooperative effects of intramolecular and intermolecular energy transfer.
Chemical science, 2023, 14, 1089-1096
1568177 CIFC18 H16 N2 O2 S2P 1 21/n 15.3077; 10.641; 14.3047
90; 97.421; 90
801.15Samanta, Ranita; Das, Susobhan; Mondal, Saikat; Alkhidir, Tamador; Mohamed, Sharmarke; Senanayak, Satyaprasad P.; Reddy, C. Malla
Elastic organic semiconducting single crystals for durable all-flexible field-effect transistors: insights into the bending mechanism.
Chemical science, 2023, 14, 1363-1371
1568178 CIFC31 H47 F6 N4 NiP -111.3574; 11.4628; 12.8226
102.524; 91.226; 93.168
1626.18Thangavadivale, Vargini G.; Tendera, Lukas; Bertermann, Rüdiger; Radius, Udo; Beweries, Torsten; Perutz, Robin N.
Solution and solid-state studies of hydrogen and halogen bonding with N-heterocyclic carbene supported nickel(II) fluoride complexes.
Faraday discussions, 2023, 244, 62-76
1568179 CIFC38 H48 F8 I N4 NiP -110.5397; 10.7172; 19.4459
105.371; 98.187; 103.797
2006.65Thangavadivale, Vargini G.; Tendera, Lukas; Bertermann, Rüdiger; Radius, Udo; Beweries, Torsten; Perutz, Robin N.
Solution and solid-state studies of hydrogen and halogen bonding with N-heterocyclic carbene supported nickel(II) fluoride complexes.
Faraday discussions, 2023, 244, 62-76
1568180 CIFC44 H48 F10 I2 N4 NiP -117.5163; 18.1903; 18.3475
104.496; 113.59; 104.443
4767.32Thangavadivale, Vargini G.; Tendera, Lukas; Bertermann, Rüdiger; Radius, Udo; Beweries, Torsten; Perutz, Robin N.
Solution and solid-state studies of hydrogen and halogen bonding with N-heterocyclic carbene supported nickel(II) fluoride complexes.
Faraday discussions, 2023, 244, 62-76
1568181 CIFC32 H54 B4 Na2 O8P -19.5043; 10.1028; 11.4194
84.951; 81.475; 62.613
962.59Prey, Sven E.; Herok, Christoph; Fantuzzi, Felipe; Bolte, Michael; Lerner, Hans-Wolfram; Engels, Bernd; Wagner, Matthias
Multifaceted behavior of a doubly reduced arylborane in B-H-bond activation and hydroboration catalysis.
Chemical science, 2023, 14, 849-860
1568182 CIFC28 H42 B3 Na O4P 1 21/n 19.6203; 16.4732; 18.2301
90; 90.025; 90
2889.1Prey, Sven E.; Herok, Christoph; Fantuzzi, Felipe; Bolte, Michael; Lerner, Hans-Wolfram; Engels, Bernd; Wagner, Matthias
Multifaceted behavior of a doubly reduced arylborane in B-H-bond activation and hydroboration catalysis.
Chemical science, 2023, 14, 849-860
1568183 CIFC40 H68 B2 Li2 O6P 21 21 2113.1281; 16.9849; 18.645
90; 90; 90
4157.5Prey, Sven E.; Herok, Christoph; Fantuzzi, Felipe; Bolte, Michael; Lerner, Hans-Wolfram; Engels, Bernd; Wagner, Matthias
Multifaceted behavior of a doubly reduced arylborane in B-H-bond activation and hydroboration catalysis.
Chemical science, 2023, 14, 849-860
1568184 CIFC30 H48 Li2 N2 O2P 1 21/c 118.6111; 16.4244; 30.4468
90; 101.989; 90
9103.9Prey, Sven E.; Herok, Christoph; Fantuzzi, Felipe; Bolte, Michael; Lerner, Hans-Wolfram; Engels, Bernd; Wagner, Matthias
Multifaceted behavior of a doubly reduced arylborane in B-H-bond activation and hydroboration catalysis.
Chemical science, 2023, 14, 849-860
1568185 CIFC82 H136 B4 N4 Na4 O16P -110.2466; 14.7968; 15.6728
108.371; 95.677; 90.32
2242.4Prey, Sven E.; Herok, Christoph; Fantuzzi, Felipe; Bolte, Michael; Lerner, Hans-Wolfram; Engels, Bernd; Wagner, Matthias
Multifaceted behavior of a doubly reduced arylborane in B-H-bond activation and hydroboration catalysis.
Chemical science, 2023, 14, 849-860
1568186 CIFC41 H69 B2 Li N2 O9C 1 2/c 112.6287; 21.7373; 17.0233
90; 110.611; 90
4374Prey, Sven E.; Herok, Christoph; Fantuzzi, Felipe; Bolte, Michael; Lerner, Hans-Wolfram; Engels, Bernd; Wagner, Matthias
Multifaceted behavior of a doubly reduced arylborane in B-H-bond activation and hydroboration catalysis.
Chemical science, 2023, 14, 849-860
1568187 CIFC28 H42 B3 Li O4P 1 21/n 129.1123; 15.8326; 43.5324
90; 102.002; 90
19626.5Prey, Sven E.; Herok, Christoph; Fantuzzi, Felipe; Bolte, Michael; Lerner, Hans-Wolfram; Engels, Bernd; Wagner, Matthias
Multifaceted behavior of a doubly reduced arylborane in B-H-bond activation and hydroboration catalysis.
Chemical science, 2023, 14, 849-860
1568188 CIFC33 H50 B2 Li O8P -18.5527; 12.4941; 16.5866
75.533; 75.852; 84.925
1663.45Prey, Sven E.; Herok, Christoph; Fantuzzi, Felipe; Bolte, Michael; Lerner, Hans-Wolfram; Engels, Bernd; Wagner, Matthias
Multifaceted behavior of a doubly reduced arylborane in B-H-bond activation and hydroboration catalysis.
Chemical science, 2023, 14, 849-860
1568189 CIFC43 H58 B2 Li N O8P 1 21/c 110.9511; 24.516; 15.2282
90; 95.506; 90
4069.6Prey, Sven E.; Herok, Christoph; Fantuzzi, Felipe; Bolte, Michael; Lerner, Hans-Wolfram; Engels, Bernd; Wagner, Matthias
Multifaceted behavior of a doubly reduced arylborane in B-H-bond activation and hydroboration catalysis.
Chemical science, 2023, 14, 849-860
1568190 CIFC49.5 H58 Co N2 O4 S2P -18.0196; 10.2784; 15.7772
73.71; 82.873; 83.416
1234.28Mishra, Esha; Ekanayaka, Thilini K.; Panagiotakopoulos, Theodoros; Le, Duy; Rahman, Talat S.; Wang, Ping; McElveen, Kayleigh A.; Phillips, Jared P.; Zaid Zaz, M.; Yazdani, Saeed; N'Diaye, Alpha T; Lai, Rebecca Y.; Streubel, Robert; Cheng, Ruihua; Shatruk, Michael; Dowben, Peter A.
Electronic structure of cobalt valence tautomeric molecules in different environments.
Nanoscale, 2023, 15, 2044-2053
1568191 CIFC7 H8 O2 S2P 21 21 216.24; 7.3164; 17.7083
90; 90; 90
808.46Hardy, Craig; Kociok-Köhn, Gabriele; Buchard, Antoine
Variations around the presence and position of sulfur in sugar-derived cyclic monomers: influence on polymerisation thermodynamics, polymer sequence and thermal properties
Polymer Chemistry, 2023, 14, 623-632
1568192 CIFC7 H10 O2 S2P 1 21 16.33251; 7.69444; 8.95591
90; 96.8866; 90
433.229Hardy, Craig; Kociok-Köhn, Gabriele; Buchard, Antoine
Variations around the presence and position of sulfur in sugar-derived cyclic monomers: influence on polymerisation thermodynamics, polymer sequence and thermal properties
Polymer Chemistry, 2023, 14, 623-632
1568193 CIFC7 H10 O3 SP 21 21 216.0382; 6.9857; 18.8158
90; 90; 90
793.67Hardy, Craig; Kociok-Köhn, Gabriele; Buchard, Antoine
Variations around the presence and position of sulfur in sugar-derived cyclic monomers: influence on polymerisation thermodynamics, polymer sequence and thermal properties
Polymer Chemistry, 2023, 14, 623-632
1568194 CIFC7 H10 O3 SI 1 2 112.599; 6.90114; 18.8705
90; 102.949; 90
1599.02Hardy, Craig; Kociok-Köhn, Gabriele; Buchard, Antoine
Variations around the presence and position of sulfur in sugar-derived cyclic monomers: influence on polymerisation thermodynamics, polymer sequence and thermal properties
Polymer Chemistry, 2023, 14, 623-632
1568195 CIFC7 H10 O4P 1 21 18.79278; 6.11294; 13.39685
90; 90.4175; 90
720.058Hardy, Craig; Kociok-Köhn, Gabriele; Buchard, Antoine
Variations around the presence and position of sulfur in sugar-derived cyclic monomers: influence on polymerisation thermodynamics, polymer sequence and thermal properties
Polymer Chemistry, 2023, 14, 623-632
1568196 CIFC336 H270 Ag46 Cl6 Cr2 N6 O32 S36P -126.4405; 30.63; 31.6049
62.291; 74.7925; 70.3241
21165.1Gupta, Rakesh Kumar; Li, Li; Wang, Zhi; Han, Bao-Liang; Feng, Lei; Gao, Zhi-Yong; Tung, Chen-Ho; Sun, Di
Regulating the assembly and expansion of the silver cluster from the Ag<sub>37</sub> to Ag<sub>46</sub> nanowheel driven by heteroanions.
Chemical science, 2023, 14, 1138-1144
1568197 CIFC288 H248 Ag37 Cl11 N6 Na O24 S30P 1 21/n 117.8704; 38.6083; 47.7137
90; 94.915; 90
32798.8Gupta, Rakesh Kumar; Li, Li; Wang, Zhi; Han, Bao-Liang; Feng, Lei; Gao, Zhi-Yong; Tung, Chen-Ho; Sun, Di
Regulating the assembly and expansion of the silver cluster from the Ag<sub>37</sub> to Ag<sub>46</sub> nanowheel driven by heteroanions.
Chemical science, 2023, 14, 1138-1144
1568198 CIFC92 H42 Co F32 N4 O24 Ru4P -110.8295; 14.3466; 16.2889
98.991; 110.11; 97.83
2297.5Kosaka, Wataru; Nemoto, Honoka; Nagano, Kohei; Kawaguchi, Shogo; Sugimoto, Kunihisa; Miyasaka, Hitoshi
Inter-layer magnetic tuning by gas adsorption in π-stacked pillared-layer framework magnets.
Chemical science, 2023, 14, 791-800
1568199 CIFC88 H42 Co F32 N4 O20 Ru4P -110.3561; 14.2275; 16.1588
96.889; 109.083; 99.555
2179.7Kosaka, Wataru; Nemoto, Honoka; Nagano, Kohei; Kawaguchi, Shogo; Sugimoto, Kunihisa; Miyasaka, Hitoshi
Inter-layer magnetic tuning by gas adsorption in π-stacked pillared-layer framework magnets.
Chemical science, 2023, 14, 791-800
1568200 CIFC88 H42 Co F32 N6 O16 Ru4P -110.3569; 14.221; 16.1573
96.891; 109.135; 99.504
2178.34Kosaka, Wataru; Nemoto, Honoka; Nagano, Kohei; Kawaguchi, Shogo; Sugimoto, Kunihisa; Miyasaka, Hitoshi
Inter-layer magnetic tuning by gas adsorption in π-stacked pillared-layer framework magnets.
Chemical science, 2023, 14, 791-800
1568201 CIFC60 H108 Br2 Cl18 N8 Na2 O12P -112.4765; 13.7256; 15.0782
71.979; 88.7149; 78.9608
2408.12Alexander, Carlson; Thom, James A.; Kenwright, Alan M.; Christensen, Kirsten E.; Sørensen, Thomas Just; Faulkner, Stephen
Chelating chloride using binuclear lanthanide complexes in water.
Chemical science, 2023, 14, 1194-1204
1568202 CIFC29 H52 N4 O6I 1 2/a 125.8831; 5.6524; 43.78
90; 94.085; 90
6388.8Alexander, Carlson; Thom, James A.; Kenwright, Alan M.; Christensen, Kirsten E.; Sørensen, Thomas Just; Faulkner, Stephen
Chelating chloride using binuclear lanthanide complexes in water.
Chemical science, 2023, 14, 1194-1204
1568203 CIFC31 H58 F2 K N8 O16 Yb2P -112.6782; 13.2543; 17.7146
94.8655; 102.8; 108.058
2721.73Alexander, Carlson; Thom, James A.; Kenwright, Alan M.; Christensen, Kirsten E.; Sørensen, Thomas Just; Faulkner, Stephen
Chelating chloride using binuclear lanthanide complexes in water.
Chemical science, 2023, 14, 1194-1204
1568204 CIFC186 H316 N48 O84 Yb12P 1 21/n 128.4973; 15.9022; 39.7702
90; 103.219; 90
17545.1Alexander, Carlson; Thom, James A.; Kenwright, Alan M.; Christensen, Kirsten E.; Sørensen, Thomas Just; Faulkner, Stephen
Chelating chloride using binuclear lanthanide complexes in water.
Chemical science, 2023, 14, 1194-1204
1568205 CIFC17 H31 N4 O9 YbP 1 21/n 110.8216; 18.3994; 11.1809
90; 106.757; 90
2131.7Alexander, Carlson; Thom, James A.; Kenwright, Alan M.; Christensen, Kirsten E.; Sørensen, Thomas Just; Faulkner, Stephen
Chelating chloride using binuclear lanthanide complexes in water.
Chemical science, 2023, 14, 1194-1204
1568206 CIFC186 H324 Eu12 N48 O84P 1 21/n 128.5577; 15.9841; 39.9615
90; 103.346; 90
17748.6Alexander, Carlson; Thom, James A.; Kenwright, Alan M.; Christensen, Kirsten E.; Sørensen, Thomas Just; Faulkner, Stephen
Chelating chloride using binuclear lanthanide complexes in water.
Chemical science, 2023, 14, 1194-1204
1568207 CIFC17 H31 Eu N4 O9P 1 21/n 110.7991; 18.3916; 11.2076
90; 106.553; 90
2133.72Alexander, Carlson; Thom, James A.; Kenwright, Alan M.; Christensen, Kirsten E.; Sørensen, Thomas Just; Faulkner, Stephen
Chelating chloride using binuclear lanthanide complexes in water.
Chemical science, 2023, 14, 1194-1204
1568208 CIFC24 H53 Fe N3 Si4P 1 21/n 118.67067; 18.94109; 18.90816
90; 94.3084; 90
6667.84Stroek, Wowa; Albrecht, Martin
Discovery of a simple iron catalyst reveals the intimate steps of C-H amination to form C-N bonds.
Chemical science, 2023, 14, 2849-2859
1568209 CIFC30 H30 F76 Fe Hg10 Mo N10 O4 S2 Sb10P -111.5091; 16.0047; 16.969
78.893; 83.202; 80.19
3010.4Rupf, Susanne Margot; Moshtaha, Amina Leoni; Malischewski, Moritz
A decacationic ferrocene-based metallostar.
Chemical science, 2023, 14, 1132-1137
1568210 CIFC98 H150 F60 Fe Hg10 N24 S10 Sb10C 1 2/c 118.7149; 36.9102; 32.7166
90; 94.377; 90
22533.8Rupf, Susanne Margot; Moshtaha, Amina Leoni; Malischewski, Moritz
A decacationic ferrocene-based metallostar.
Chemical science, 2023, 14, 1132-1137
1568211 CIFC100 H100 F30 Fe Hg10 N20 O20P 1 21/n 116.8907; 40.5278; 23.013
90; 109.001; 90
14895Rupf, Susanne Margot; Moshtaha, Amina Leoni; Malischewski, Moritz
A decacationic ferrocene-based metallostar.
Chemical science, 2023, 14, 1132-1137
1568212 CIFC86 H69 Br Cl3 Os P3P -113.8929; 15.2075; 18.0219
93.513; 96.836; 101.444
3691.25Lin, Zuzhang; Cai, Yapeng; Zhang, Yaowei; Zhang, Hong; Xia, Haiping
Heterocyclic Suzuki-Miyaura coupling reaction of metalla-aromatics and mechanistic analysis of site selectivity.
Chemical science, 2023, 14, 1227-1233
1568213 CIFC98 H77 Br2 Cl2 N Os P3C 1 2/c 137.0917; 10.9818; 43.2112
90; 106.08; 90
16912.7Lin, Zuzhang; Cai, Yapeng; Zhang, Yaowei; Zhang, Hong; Xia, Haiping
Heterocyclic Suzuki-Miyaura coupling reaction of metalla-aromatics and mechanistic analysis of site selectivity.
Chemical science, 2023, 14, 1227-1233
1568214 CIFC97 H106 B2 N0 O10P 1 21/n 113.9414; 20.932; 28.7875
90; 95.848; 90
8357.1Chen, Jin-Fa; Gao, Qing-Xiu; Liu, Lijie; Chen, Pangkuan; Wei, Tai-Bao
A pillar[5]arene-based planar chiral charge-transfer dye with enhanced circularly polarized luminescence and multiple responsive chiroptical changes.
Chemical science, 2023, 14, 987-993
1568215 CIFC78 H80 Cl2 N2 OP -113.3693; 16.483; 16.996
98.522; 110.283; 111.654
3097.1Krzeszewski, Maciej; Dobrzycki, Łukasz; Sobolewski, Andrzej L.; Cyrański, Michał K.; Gryko, Daniel T.
Saddle-shaped aza-nanographene with multiple odd-membered rings
Chemical Science, 2023, 14, 2353-2360
1568216 CIFC17 H14 N2 O2P 1 c 111.1707; 3.8686; 30.877
90; 91.966; 90
1333.6Ruiz Martínez, Cristina; Pérez, Juana M.; Arrabal-Campos, Francisco M.; Rodríguez-Diéguez, Antonio; Choquesillo-Lazarte, Duane; Martínez-Lao, Juan A.; Ortuño, Manuel A.; Fernández, Ignacio
Lithium anthraquinoids as catalysts in the ROP of lactide and caprolactone into cyclic polymers
Polymer Chemistry, 2023, 14, 452-461
1568217 CIFC25 H16 Cl3 N3 O2P 1 21/c 115.3458; 15.7608; 9.4437
90; 93.062; 90
2280.81Ruiz Martínez, Cristina; Pérez, Juana M.; Arrabal-Campos, Francisco M.; Rodríguez-Diéguez, Antonio; Choquesillo-Lazarte, Duane; Martínez-Lao, Juan A.; Ortuño, Manuel A.; Fernández, Ignacio
Lithium anthraquinoids as catalysts in the ROP of lactide and caprolactone into cyclic polymers
Polymer Chemistry, 2023, 14, 452-461
1568218 CIFC19 H19 N3 O2 PdP 1 21/c 17.975; 16.4265; 13.4165
90; 103.052; 90
1712.17Shukla, Rahul K.; Nair, Akshay M.; Volla, Chandra M. R.
Pd(ii)-catalyzed β- and γ-C-(sp<sup>3</sup>)-H dienylation with allenyl acetates.
Chemical science, 2023, 14, 955-962
1568219 CIFC27 H22 N2 OP 1 21/c 117.933; 5.7655; 20.387
90; 93.694; 90
2103.5Shukla, Rahul K.; Nair, Akshay M.; Volla, Chandra M. R.
Pd(ii)-catalyzed β- and γ-C-(sp<sup>3</sup>)-H dienylation with allenyl acetates.
Chemical science, 2023, 14, 955-962
1568220 CIFC H N O PdC 1 c 118.5183; 9.4082; 20.3888
90; 102.717; 90
3465.08Shukla, Rahul K.; Nair, Akshay M.; Volla, Chandra M. R.
Pd(ii)-catalyzed β- and γ-C-(sp<sup>3</sup>)-H dienylation with allenyl acetates.
Chemical science, 2023, 14, 955-962
1568221 CIFC18 H20 N4 O4P 15.189; 7.915; 10.643
80.745; 82.34; 88.94
427.6De, Soumi; Asthana, Deepak; Thirmal, Chinthakuntla; Keshri, Sudhir K.; Ghosh, Ram Krishna; Hundal, Geeta; Kumar, Raju; Singh, Satyendra; Chatterjee, Ratnamala; Mukhopadhyay, Pritam
A folded π-system with supramolecularly oriented dipoles: single-component piezoelectric relaxor with NLO activity.
Chemical science, 2023, 14, 2547-2552
1568222 CIFC320 H480 Cu75 S32P -123.6279; 23.6779; 23.8819
112.131; 119.538; 92.924
10292.9Tang, Jie; Liu, Chong; Zhu, Chenyu; Sun, Keju; Wang, He; Yin, Wen; Xu, Chuting; Li, Yang; Wang, Weiguo; Wang, Li; Wu, Renan; Liu, Chao; Huang, Jiahui
High-nuclearity and thiol protected core-shell [Cu<sub>75</sub>(S-Adm)<sub>32</sub>]<sup>2+</sup>: distorted octahedra fixed to Cu<sub>15</sub> core <i>via</i> strong cuprophilic interactions.
Nanoscale, 2023, 15, 2843-2848
1568223 CIFMg P2 SiI -4 2 d5.7156; 5.7156; 10.074
90; 90; 90
329.1Chen, Jindong; Wu, Qingchen; Tian, Haotian; Jiang, Xiaotian; Xu, Feng; Zhao, Xin; Lin, Zheshuai; Luo, Min; Ye, Ning
Uncovering a Vital Band Gap Mechanism of Pnictides.
Advanced science (Weinheim, Baden-Wurttemberg, Germany), 2022, 9, e2105787
1568224 CIFC18 H10 F4 S2P 1 21/n 115.5542; 5.6674; 18.576
90; 106.95; 90
1566.38Shen, Shen; Baryshnikov, Glib V.; Xie, Qishan; Wu, Bin; Lv, Meng; Sun, Hao; Li, Zhongyu; Ågren, Hans; Chen, Jinquan; Zhu, Liangliang
Making multi-twisted luminophores produce persistent room-temperature phosphorescence.
Chemical science, 2023, 14, 970-978
1568225 CIFC24 H18 F4 O4 S2P 1 21/n 14.812; 20.6876; 11.0963
90; 96.357; 90
1097.83Shen, Shen; Baryshnikov, Glib V.; Xie, Qishan; Wu, Bin; Lv, Meng; Sun, Hao; Li, Zhongyu; Ågren, Hans; Chen, Jinquan; Zhu, Liangliang
Making multi-twisted luminophores produce persistent room-temperature phosphorescence.
Chemical science, 2023, 14, 970-978
1568226 CIFC24 H18 F4 O4 S2P 1 21/n 14.8071; 20.699; 11.0964
90; 96.329; 90
1097.39Shen, Shen; Baryshnikov, Glib V.; Xie, Qishan; Wu, Bin; Lv, Meng; Sun, Hao; Li, Zhongyu; Ågren, Hans; Chen, Jinquan; Zhu, Liangliang
Making multi-twisted luminophores produce persistent room-temperature phosphorescence.
Chemical science, 2023, 14, 970-978
1568227 CIFC42 H30 S6P -19.6077; 10.2863; 10.6653
68.438; 76.888; 65.477
888.39Shen, Shen; Baryshnikov, Glib V.; Xie, Qishan; Wu, Bin; Lv, Meng; Sun, Hao; Li, Zhongyu; Ågren, Hans; Chen, Jinquan; Zhu, Liangliang
Making multi-twisted luminophores produce persistent room-temperature phosphorescence.
Chemical science, 2023, 14, 970-978
1568228 CIFC30 H20 F2 S4P -19.6203; 14.1325; 14.9666
76.293; 88.135; 88.84
1975.68Shen, Shen; Baryshnikov, Glib V.; Xie, Qishan; Wu, Bin; Lv, Meng; Sun, Hao; Li, Zhongyu; Ågren, Hans; Chen, Jinquan; Zhu, Liangliang
Making multi-twisted luminophores produce persistent room-temperature phosphorescence.
Chemical science, 2023, 14, 970-978
1568229 CIFC20 H14 F4 S2P 1 21/c 115.1661; 4.8806; 11.4983
90; 93.913; 90
849.12Shen, Shen; Baryshnikov, Glib V.; Xie, Qishan; Wu, Bin; Lv, Meng; Sun, Hao; Li, Zhongyu; Ågren, Hans; Chen, Jinquan; Zhu, Liangliang
Making multi-twisted luminophores produce persistent room-temperature phosphorescence.
Chemical science, 2023, 14, 970-978
1568230 CIFC18 H10 F4 S2P 1 21/n 115.5305; 5.6743; 18.5471
90; 106.918; 90
1563.72Shen, Shen; Baryshnikov, Glib V.; Xie, Qishan; Wu, Bin; Lv, Meng; Sun, Hao; Li, Zhongyu; Ågren, Hans; Chen, Jinquan; Zhu, Liangliang
Making multi-twisted luminophores produce persistent room-temperature phosphorescence.
Chemical science, 2023, 14, 970-978
1568231 CIFC24 H18 F4 O4 S2P 1 21/n 14.8077; 20.6905; 11.0959
90; 96.412; 90
1096.85Shen, Shen; Baryshnikov, Glib V.; Xie, Qishan; Wu, Bin; Lv, Meng; Sun, Hao; Li, Zhongyu; Ågren, Hans; Chen, Jinquan; Zhu, Liangliang
Making multi-twisted luminophores produce persistent room-temperature phosphorescence.
Chemical science, 2023, 14, 970-978
1568232 CIFC48 H42 S6R -3 :H21.0773; 21.0773; 7.9829
90; 90; 120
3071.29Shen, Shen; Baryshnikov, Glib V.; Xie, Qishan; Wu, Bin; Lv, Meng; Sun, Hao; Li, Zhongyu; Ågren, Hans; Chen, Jinquan; Zhu, Liangliang
Making multi-twisted luminophores produce persistent room-temperature phosphorescence.
Chemical science, 2023, 14, 970-978
1568233 CIFC60 H54 O12 S6P 1 21/c 120.7715; 6.2243; 22.3727
90; 94.032; 90
2885.4Shen, Shen; Baryshnikov, Glib V.; Xie, Qishan; Wu, Bin; Lv, Meng; Sun, Hao; Li, Zhongyu; Ågren, Hans; Chen, Jinquan; Zhu, Liangliang
Making multi-twisted luminophores produce persistent room-temperature phosphorescence.
Chemical science, 2023, 14, 970-978
1568234 CIFC42 H36 F2 O8 S4P -15.6192; 8.2941; 21.138
79.178; 84.757; 89.326
963.58Shen, Shen; Baryshnikov, Glib V.; Xie, Qishan; Wu, Bin; Lv, Meng; Sun, Hao; Li, Zhongyu; Ågren, Hans; Chen, Jinquan; Zhu, Liangliang
Making multi-twisted luminophores produce persistent room-temperature phosphorescence.
Chemical science, 2023, 14, 970-978
1568235 CIFC48 H42 S6P -112.4505; 14.978; 21.6769
92.868; 98.081; 91.753
3994.3Shen, Shen; Baryshnikov, Glib V.; Xie, Qishan; Wu, Bin; Lv, Meng; Sun, Hao; Li, Zhongyu; Ågren, Hans; Chen, Jinquan; Zhu, Liangliang
Making multi-twisted luminophores produce persistent room-temperature phosphorescence.
Chemical science, 2023, 14, 970-978
1568236 CIFC216 H72 Au18 Cu32 F66 S36F m -3 c42.573; 42.573; 42.573
90; 90; 90
77162Tang, Li; Wang, Bin; Wang, Ru; Wang, Shuxin
Alloying and dealloying of Au<sub>18</sub>Cu<sub>32</sub> nanoclusters at precise locations <i>via</i> controlling the electronegativity of substituent groups on thiol ligands.
Nanoscale, 2023, 15, 1602-1608
1568237 CIFC252 H252 Au20.31 Cu29.69 O36 S36P -121.3034; 21.5883; 21.9884
111.776; 118.542; 96.201
7728.8Tang, Li; Wang, Bin; Wang, Ru; Wang, Shuxin
Alloying and dealloying of Au<sub>18</sub>Cu<sub>32</sub> nanoclusters at precise locations <i>via</i> controlling the electronegativity of substituent groups on thiol ligands.
Nanoscale, 2023, 15, 1602-1608
1568238 CIFC35 H34 Cl3 N2 Si2C 1 2/c 125.255; 9.038; 16.9105
90; 120.591; 90
3322.7Zhang, Sutao; Han, Yuxi; He, Jianghua; Zhang, Yuetao
Synthesis of fluorescent poly(silyl indole)s via borane-catalyzed C–H silylation of indoles
Polymer Chemistry, 2023, 14, 492-499
1568239 CIFC34 H36 N2 Si2P -18.4884; 11.5493; 15.4564
89.802; 82.731; 77.808
1468.77Zhang, Sutao; Han, Yuxi; He, Jianghua; Zhang, Yuetao
Synthesis of fluorescent poly(silyl indole)s via borane-catalyzed C–H silylation of indoles
Polymer Chemistry, 2023, 14, 492-499
1568240 CIFC7 H8 N4 O3 SeP c a 2121.779; 3.8696; 24.33
90; 90; 90
2050.4Aliyeva, Vusala A.; Gurbanov, Atash V.; Mahmoud, Abdallah G.; Gomila, Rosa M.; Frontera, Antonio; Mahmudov, Kamran T.; Pombeiro, Armando J. L.
Chalcogen bonding in copper(II)-mediated synthesis.
Faraday discussions, 2023, 244, 77-95
1568241 CIFC10 H8 Br2 Cu N8 O2 Se2P -15.4742; 7.767; 11.921
73.52; 79.658; 70.146
455.2Aliyeva, Vusala A.; Gurbanov, Atash V.; Mahmoud, Abdallah G.; Gomila, Rosa M.; Frontera, Antonio; Mahmudov, Kamran T.; Pombeiro, Armando J. L.
Chalcogen bonding in copper(II)-mediated synthesis.
Faraday discussions, 2023, 244, 77-95
1568242 CIFC24 H22 Br4 Cu2 N2 O2 Se2P 1 21/n 18.127; 13.0444; 14.448
90; 99.666; 90
1509.9Aliyeva, Vusala A.; Gurbanov, Atash V.; Mahmoud, Abdallah G.; Gomila, Rosa M.; Frontera, Antonio; Mahmudov, Kamran T.; Pombeiro, Armando J. L.
Chalcogen bonding in copper(II)-mediated synthesis.
Faraday discussions, 2023, 244, 77-95
1568243 CIFC44 H46 Br2 Cu2 N4 O6 Se2P -18.2849; 11.2981; 12.3104
83.249; 81.394; 81.805
1122.23Aliyeva, Vusala A.; Gurbanov, Atash V.; Mahmoud, Abdallah G.; Gomila, Rosa M.; Frontera, Antonio; Mahmudov, Kamran T.; Pombeiro, Armando J. L.
Chalcogen bonding in copper(II)-mediated synthesis.
Faraday discussions, 2023, 244, 77-95
1568244 CIFC16 H22 Cl8 N2 SnP 1 21 112.2556; 7.1074; 14.0867
90; 98.156; 90
1214.62Han, Xiao; Cheng, Puxin; Shi, Rongchao; Zheng, Yongshen; Qi, Siming; Xu, Jialiang; Bu, Xian-He
Linear optical afterglow and nonlinear optical harmonic generation from chiral tin(IV) halides: the role of lattice distortions.
Materials horizons, 2023, 10, 1005-1011
1568245 CIFC16 H22 Cl6 F2 N2 SnP 1 21/c 113.9427; 7.1499; 12.4112
90; 109.933; 90
1163.14Han, Xiao; Cheng, Puxin; Shi, Rongchao; Zheng, Yongshen; Qi, Siming; Xu, Jialiang; Bu, Xian-He
Linear optical afterglow and nonlinear optical harmonic generation from chiral tin(IV) halides: the role of lattice distortions.
Materials horizons, 2023, 10, 1005-1011
1568246 CIFC16 H22 Cl8 N2 SnP 1 21 112.242; 7.1142; 14.0909
90; 98.195; 90
1214.67Han, Xiao; Cheng, Puxin; Shi, Rongchao; Zheng, Yongshen; Qi, Siming; Xu, Jialiang; Bu, Xian-He
Linear optical afterglow and nonlinear optical harmonic generation from chiral tin(IV) halides: the role of lattice distortions.
Materials horizons, 2023, 10, 1005-1011
1568247 CIFC16 H22 Cl6 F2 N2 SnP 1 21 112.2505; 7.1627; 14.0193
90; 110.504; 90
1152.21Han, Xiao; Cheng, Puxin; Shi, Rongchao; Zheng, Yongshen; Qi, Siming; Xu, Jialiang; Bu, Xian-He
Linear optical afterglow and nonlinear optical harmonic generation from chiral tin(IV) halides: the role of lattice distortions.
Materials horizons, 2023, 10, 1005-1011
1568248 CIFC16 H22 Cl6 F2 N2 SnP 1 21 112.2157; 7.1438; 13.9697
90; 110.521; 90
1141.7Han, Xiao; Cheng, Puxin; Shi, Rongchao; Zheng, Yongshen; Qi, Siming; Xu, Jialiang; Bu, Xian-He
Linear optical afterglow and nonlinear optical harmonic generation from chiral tin(IV) halides: the role of lattice distortions.
Materials horizons, 2023, 10, 1005-1011
1568249 CIFC16 H22 Cl8 N2 SnP 1 21/c 114.1247; 7.1094; 12.3083
90; 97.523; 90
1225.34Han, Xiao; Cheng, Puxin; Shi, Rongchao; Zheng, Yongshen; Qi, Siming; Xu, Jialiang; Bu, Xian-He
Linear optical afterglow and nonlinear optical harmonic generation from chiral tin(IV) halides: the role of lattice distortions.
Materials horizons, 2023, 10, 1005-1011
1568250 CIFC132.65 H133.3 Ag2 B2 Cl1.3 N12 O6C 1 2/c 139.4123; 31.761; 41.134
90; 116.515; 90
46075Ayme, Jean-François; Bruchmann, Bernd; Karmazin, Lydia; Kyritsakas, Nathalie
Transient self-assembly of metal-organic complexes.
Chemical science, 2023, 14, 1244-1251
1568251 CIFC96 H88 Ag2 B2 N8 O4C 1 2/c 117.5943; 21.9079; 21.0813
90; 104.382; 90
7871.2Ayme, Jean-François; Bruchmann, Bernd; Karmazin, Lydia; Kyritsakas, Nathalie
Transient self-assembly of metal-organic complexes.
Chemical science, 2023, 14, 1244-1251
1568252 CIFC25 H18 Cl2 N3 ZnC c c a :213.8231; 20.1276; 16.7673
90; 90; 90
4665.1Ngue, Chin May; Ho, Kuan Fu; Sainbileg, Batjargal; Batsaikhan, Erdembayalag; Hayashi, Michitoshi; Lee, Kuei Yi; Chen, Ruei San; Leung, Man Kit
Conductivity and photoconductivity in a two-dimensional zinc bis(triarylamine) coordination polymer.
Chemical science, 2023, 14, 1320-1328
1568253 CIFC34 H50 N2 ZnP b c a15.0449; 16.2449; 26.5593
90; 90; 90
6491.17Parr, Joseph M.; Phanopoulos, Andreas; Vickneswaran, Aaranjah; Crimmin, Mark R.
Understanding the role of ring strain in β-alkyl migration at Mg and Zn centres.
Chemical science, 2023, 14, 1590-1597
1568254 CIFC33 H48 N2 ZnP 1 21/n 110.7471; 21.2654; 13.8275
90; 93.143; 90
3155.4Parr, Joseph M.; Phanopoulos, Andreas; Vickneswaran, Aaranjah; Crimmin, Mark R.
Understanding the role of ring strain in β-alkyl migration at Mg and Zn centres.
Chemical science, 2023, 14, 1590-1597
1568255 CIFC62 H90 N4 Zn2P -112.4022; 15.979; 31.6956
83.997; 83.924; 68.783
5807.7Parr, Joseph M.; Phanopoulos, Andreas; Vickneswaran, Aaranjah; Crimmin, Mark R.
Understanding the role of ring strain in β-alkyl migration at Mg and Zn centres.
Chemical science, 2023, 14, 1590-1597
1568256 CIFC35 H52 N2 ZnP 1 21/n 111.2164; 20.8079; 14.1171
90; 96.264; 90
3275.12Parr, Joseph M.; Phanopoulos, Andreas; Vickneswaran, Aaranjah; Crimmin, Mark R.
Understanding the role of ring strain in β-alkyl migration at Mg and Zn centres.
Chemical science, 2023, 14, 1590-1597
1568257 CIFC14 H9 B F2 N2 OP 1 21/c 17.7662; 20.908; 7.2899
90; 90.463; 90
1183.7Gai, Lizhi; Zhang, Ruijing; Shi, Xiuguang; Ni, Zhigang; Wang, Sisi; Zhang, Jun-Long; Lu, Hua; Guo, Zijian
BOINPYs: facile synthesis and photothermal properties triggered by photoinduced nonadiabatic decay.
Chemical science, 2023, 14, 1434-1442
1568258 CIFC16 H9 B F2 N2 O SP 1 21/c 17.763; 24.877; 7.273
90; 90.525; 90
1404.5Gai, Lizhi; Zhang, Ruijing; Shi, Xiuguang; Ni, Zhigang; Wang, Sisi; Zhang, Jun-Long; Lu, Hua; Guo, Zijian
BOINPYs: facile synthesis and photothermal properties triggered by photoinduced nonadiabatic decay.
Chemical science, 2023, 14, 1434-1442
1568259 CIFC30 H21 B N2 OI 41/a :217.675; 17.675; 29.023
90; 90; 90
9067Gai, Lizhi; Zhang, Ruijing; Shi, Xiuguang; Ni, Zhigang; Wang, Sisi; Zhang, Jun-Long; Lu, Hua; Guo, Zijian
BOINPYs: facile synthesis and photothermal properties triggered by photoinduced nonadiabatic decay.
Chemical science, 2023, 14, 1434-1442
1568260 CIFC21 H41 Br N2P -16.715; 7.437; 24.396
86.48; 82.188; 68.301
1121.4Bellia, Sophia A.; Metzler, Matthew; Huynh, Marissa; Zeller, Matthias; Mirjafari, Arsalan; Cohn, Pamela; Hillesheim, Patrick C.
Bridging the crystal and solution structure of a series of lipid-inspired ionic liquids.
Soft matter, 2023, 19, 749-765
1568261 CIFC21 H41 I N2P 1 21/c 127.66; 9.968; 8.286
90; 91.613; 90
2283.7Bellia, Sophia A.; Metzler, Matthew; Huynh, Marissa; Zeller, Matthias; Mirjafari, Arsalan; Cohn, Pamela; Hillesheim, Patrick C.
Bridging the crystal and solution structure of a series of lipid-inspired ionic liquids.
Soft matter, 2023, 19, 749-765
1568262 CIFC23 H41 F6 N3 O4 S2P -17.0531; 15.7762; 27.107
96.4858; 95.9509; 98.1327
2944.75Bellia, Sophia A.; Metzler, Matthew; Huynh, Marissa; Zeller, Matthias; Mirjafari, Arsalan; Cohn, Pamela; Hillesheim, Patrick C.
Bridging the crystal and solution structure of a series of lipid-inspired ionic liquids.
Soft matter, 2023, 19, 749-765
1568263 CIFC23 H22 O3P 1 21/c 110.6143; 31.7341; 5.4746
90; 96.25; 90
1833.08Zhao, Hongping; Yuan, Weiming
Three-component reductive conjugate addition/aldol tandem reaction enabled by nickel/photoredox dual catalysis.
Chemical science, 2023, 14, 1485-1490
1568264 CIFC29 H33 N O2P -19.5665; 10.3386; 12.4055
93.312; 101.472; 98.72
1183.64Zhao, Hongping; Yuan, Weiming
Three-component reductive conjugate addition/aldol tandem reaction enabled by nickel/photoredox dual catalysis.
Chemical science, 2023, 14, 1485-1490
1568265 CIFC29 H33 N O2P -18.0904; 12.0393; 12.8065
79.36; 75.595; 79.481
1175.11Zhao, Hongping; Yuan, Weiming
Three-component reductive conjugate addition/aldol tandem reaction enabled by nickel/photoredox dual catalysis.
Chemical science, 2023, 14, 1485-1490
1568266 CIFC17 H18 O2P 1 21/c 19.7199; 17.3733; 8.5275
90; 106.832; 90
1378.32Wang, Siyuan; Zhou, Yuqiao; Xiao, Wanlong; Li, Zegong; Liu, Xiaohua; Feng, Xiaoming
Asymmetric synthesis of complex tricyclo[3.2.2.0]nonenes from racemic norcaradienes: kinetic resolution <i>via</i> Diels-Alder reaction.
Chemical science, 2023, 14, 1844-1851
1568267 CIFC26 H23 F O3P 21 21 218.7024; 13.0704; 18.7294
90; 90; 90
2130.35Wang, Siyuan; Zhou, Yuqiao; Xiao, Wanlong; Li, Zegong; Liu, Xiaohua; Feng, Xiaoming
Asymmetric synthesis of complex tricyclo[3.2.2.0]nonenes from racemic norcaradienes: kinetic resolution <i>via</i> Diels-Alder reaction.
Chemical science, 2023, 14, 1844-1851
1568268 CIFC29 H30 O5P 43 21 29.9702; 9.9702; 48.7176
90; 90; 90
4842.77Wang, Siyuan; Zhou, Yuqiao; Xiao, Wanlong; Li, Zegong; Liu, Xiaohua; Feng, Xiaoming
Asymmetric synthesis of complex tricyclo[3.2.2.0]nonenes from racemic norcaradienes: kinetic resolution <i>via</i> Diels-Alder reaction.
Chemical science, 2023, 14, 1844-1851
1568269 CIFC57 H92 Cl2 Co N4 O15P 21 21 2111.4334; 13.0191; 41.707
90; 90; 90
6208.2Wang, Siyuan; Zhou, Yuqiao; Xiao, Wanlong; Li, Zegong; Liu, Xiaohua; Feng, Xiaoming
Asymmetric synthesis of complex tricyclo[3.2.2.0]nonenes from racemic norcaradienes: kinetic resolution <i>via</i> Diels-Alder reaction.
Chemical science, 2023, 14, 1844-1851
1568270 CIFC60 H68 N4 O8P 1 21/c 115.9159; 21.273; 18.676
90; 107.116; 90
6043.25Lee, Areum; Yang, Ju Ho; Oh, Ju Hyun; Hay, Benjamin P.; Lee, Kyounghoon; Lynch, Vincent M.; Sessler, Jonathan L.; Kim, Sung Kuk
Cyclo[2]carbazole[2]pyrrole: a preorganized calix[4]pyrrole analogue.
Chemical science, 2023, 14, 1218-1226
1568271 CIFC96 H148 N6 O9P 1 21/n 117.4296; 29.0372; 18.0368
90; 91.2569; 90
9126.4Lee, Areum; Yang, Ju Ho; Oh, Ju Hyun; Hay, Benjamin P.; Lee, Kyounghoon; Lynch, Vincent M.; Sessler, Jonathan L.; Kim, Sung Kuk
Cyclo[2]carbazole[2]pyrrole: a preorganized calix[4]pyrrole analogue.
Chemical science, 2023, 14, 1218-1226
1568272 CIFC26 H21 Br2 N O2P 1 21 18.6562; 23.5435; 11.2698
90; 97.609; 90
2276.5Teresa, Javier; Velado, Marina; Fernández de la Pradilla, Roberto; Viso, Alma; Lozano, Blanca; Tortosa, Mariola
Enantioselective Suzuki cross-coupling of 1,2-diboryl cyclopropanes.
Chemical science, 2023, 14, 1575-1581
1568273 CIFC32 H42 O4P 1 21/c 19.0911; 15.1646; 10.8715
90; 90.782; 90
1498.6Maeda, Takeshi; Oka, Taishi; Sakamaki, Daisuke; Fujiwara, Hideki; Suzuki, Naoya; Yagi, Shigeyuki; Konishi, Tatsuki; Kamada, Kenji
Unveiling a new aspect of oxocarbons: open-shell character of 4- and 5-membered oxocarbon derivatives showing near-infrared absorption.
Chemical science, 2023, 14, 1978-1985
1568274 CIFC34 H43 Cl3 O3 S2P -110.8829; 11.8981; 14.5843
100.894; 93.914; 104.037
1786.1Maeda, Takeshi; Oka, Taishi; Sakamaki, Daisuke; Fujiwara, Hideki; Suzuki, Naoya; Yagi, Shigeyuki; Konishi, Tatsuki; Kamada, Kenji
Unveiling a new aspect of oxocarbons: open-shell character of 4- and 5-membered oxocarbon derivatives showing near-infrared absorption.
Chemical science, 2023, 14, 1978-1985
1568275 CIFC48 H63 O3 S3P -113.5881; 14.1008; 14.4563
89.576; 67.544; 67.336
2330.2Maeda, Takeshi; Oka, Taishi; Sakamaki, Daisuke; Fujiwara, Hideki; Suzuki, Naoya; Yagi, Shigeyuki; Konishi, Tatsuki; Kamada, Kenji
Unveiling a new aspect of oxocarbons: open-shell character of 4- and 5-membered oxocarbon derivatives showing near-infrared absorption.
Chemical science, 2023, 14, 1978-1985
1568276 CIFC56 H89 Cu N5 O4P 1 21/c 110.29; 26.6421; 20.4572
90; 101.477; 90
5496.1Bower, Jamey K.; Reese, Maxwell S.; Mazin, Ilia M.; Zarnitsa, Lina M.; Cypcar, Andrew D.; Moore, Curtis E.; Sokolov, Alexander Yu; Zhang, Shiyu
C(sp<sup>3</sup>)-H cyanation by a formal copper(iii) cyanide complex.
Chemical science, 2023, 14, 1301-1307
1568277 CIFC46.35 H66.39 Cu N4 O5.15P 1 21/c 113.0154; 15.4677; 22.5915
90; 97.887; 90
4505.06Bower, Jamey K.; Reese, Maxwell S.; Mazin, Ilia M.; Zarnitsa, Lina M.; Cypcar, Andrew D.; Moore, Curtis E.; Sokolov, Alexander Yu; Zhang, Shiyu
C(sp<sup>3</sup>)-H cyanation by a formal copper(iii) cyanide complex.
Chemical science, 2023, 14, 1301-1307
1568278 CIFC32 H17 N5P 1 c 111.115; 7.4032; 41.998
90; 93.75; 90
3448.5Chen, Jinqiu; Yang, Canglei; Ma, Shuang; Liu, Zhiqi; Xiang, Wenxin; Zhang, Jing
Polarization-induced nanohelixes of organic cocrystals from asymmetric components with dopant-induced chirality inversion.
Chemical science, 2023, 14, 2091-2096
1568279 CIFC36 H16 N6 OP 17.023; 9.909; 11.109
65.89; 74.66; 73.28
666.2Chen, Jinqiu; Yang, Canglei; Ma, Shuang; Liu, Zhiqi; Xiang, Wenxin; Zhang, Jing
Polarization-induced nanohelixes of organic cocrystals from asymmetric components with dopant-induced chirality inversion.
Chemical science, 2023, 14, 2091-2096
1568280 CIFC32 H27 N O3 SP 1 21/n 113.2549; 11.5853; 17.1735
90; 97.293; 90
2615.86Hu, Yuan; Huang, Jin-Yu; Yan, Ru-Jie; Chen, Zhi-Chao; Ouyang, Qin; Du, Wei; Chen, Ying-Chun
Diastereodivergent <i>cis</i>- and <i>trans</i>-fused [4 + 2] annulations of cyclic 1,3-dienes and 1-azadienes <i>via</i> ligand-controlled palladium catalysis.
Chemical science, 2023, 14, 1896-1901
1568281 CIFC32 H27 N O3 SP 21 21 218.7448; 12.1996; 23.9382
90; 90; 90
2553.8Hu, Yuan; Huang, Jin-Yu; Yan, Ru-Jie; Chen, Zhi-Chao; Ouyang, Qin; Du, Wei; Chen, Ying-Chun
Diastereodivergent <i>cis</i>- and <i>trans</i>-fused [4 + 2] annulations of cyclic 1,3-dienes and 1-azadienes <i>via</i> ligand-controlled palladium catalysis.
Chemical science, 2023, 14, 1896-1901

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