Crystallography Open Database

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1558131 CIFC28 H24 Cl N2 O5P 4/n :226.429; 26.429; 7.867
90; 90; 90
5495Duan, Wen-Di; Zhang, Yu-Fang; Hu, Youhong
NaH Promoted One-Pot Tandem Reactions of 3-(1-Alkynyl) Chromones to Form 2-Nitrogen-Substituted Xanthones
ACS Omega, 2020, 5, 13454-13461
4514440 CIFC10 H12 Cl4 Mn N2P -17.6243; 8.044; 12.562
88.72; 83.85; 80.07
754.5Li, Chunyang; Bai, Xianwei; Guo, Yongchang; Zou, Bingsuo
Tunable Emission Properties of Manganese Chloride Small Single Crystals by Pyridine Incorporation.
ACS omega, 2019, 4, 8039-8045
4514441 CIFC5 H8 Cl3 Mn N OP 1 21/n 111.417; 7.2779; 11.817
90; 102.83; 90
957.4Li, Chunyang; Bai, Xianwei; Guo, Yongchang; Zou, Bingsuo
Tunable Emission Properties of Manganese Chloride Small Single Crystals by Pyridine Incorporation.
ACS omega, 2019, 4, 8039-8045
4514932 CIFC42 H33 N O2P 1 21/c 19.5161; 30.572; 13.2584
90; 125.371; 90
3145.3Yin, Ya; Chen, Zhao; Fan, Congbin; Liu, Gang; Pu, Shouzhi
1,8-Naphthalimide-Based Highly Emissive Luminophors with Various Mechanofluorochromism and Aggregation-Induced Characteristics.
ACS omega, 2019, 4, 14324-14332
4514933 CIFC42 H46 N3 O5 PP -19.4329; 15.1034; 26.0725
88.912; 88.455; 89.894
3712.5Santra, Biswajit; Mandal, Debdeep; Gupta, Vivek; Kalita, Pankaj; Kumar, Vierandra; Narayanan, Ramakirushnan Suriya; Dey, Atanu; Chrysochos, Nicolas; Mohammad, Akbar; Singh, Ajeet; Zimmer, Michael; Dalapati, Rana; Biswas, Shyam; Schulzke, Carola; Chandrasekhar, Vadapalli; Scheschkewitz, David; Jana, Anukul
Structural Diversity in Supramolecular Organization of Anionic Phosphate Monoesters: Role of Cations.
ACS omega, 2019, 4, 2118-2133
4514934 CIFC39 H39 N2 O4 PP -19.6355; 10.7583; 17.1049
93.228; 98.981; 109.589
1638.7Santra, Biswajit; Mandal, Debdeep; Gupta, Vivek; Kalita, Pankaj; Kumar, Vierandra; Narayanan, Ramakirushnan Suriya; Dey, Atanu; Chrysochos, Nicolas; Mohammad, Akbar; Singh, Ajeet; Zimmer, Michael; Dalapati, Rana; Biswas, Shyam; Schulzke, Carola; Chandrasekhar, Vadapalli; Scheschkewitz, David; Jana, Anukul
Structural Diversity in Supramolecular Organization of Anionic Phosphate Monoesters: Role of Cations.
ACS omega, 2019, 4, 2118-2133
4514935 CIFC40 H43 N2 O5 PP 1 21/n 19.5044; 23.4379; 16.1485
90; 103.624; 90
3496.1Santra, Biswajit; Mandal, Debdeep; Gupta, Vivek; Kalita, Pankaj; Kumar, Vierandra; Narayanan, Ramakirushnan Suriya; Dey, Atanu; Chrysochos, Nicolas; Mohammad, Akbar; Singh, Ajeet; Zimmer, Michael; Dalapati, Rana; Biswas, Shyam; Schulzke, Carola; Chandrasekhar, Vadapalli; Scheschkewitz, David; Jana, Anukul
Structural Diversity in Supramolecular Organization of Anionic Phosphate Monoesters: Role of Cations.
ACS omega, 2019, 4, 2118-2133
4514936 CIFC53 H64 N5 O4 PP -113.676; 14.171; 15.193
75.37; 89.48; 62.42
2505.2Santra, Biswajit; Mandal, Debdeep; Gupta, Vivek; Kalita, Pankaj; Kumar, Vierandra; Narayanan, Ramakirushnan Suriya; Dey, Atanu; Chrysochos, Nicolas; Mohammad, Akbar; Singh, Ajeet; Zimmer, Michael; Dalapati, Rana; Biswas, Shyam; Schulzke, Carola; Chandrasekhar, Vadapalli; Scheschkewitz, David; Jana, Anukul
Structural Diversity in Supramolecular Organization of Anionic Phosphate Monoesters: Role of Cations.
ACS omega, 2019, 4, 2118-2133
4514937 CIFC86 H94 N4 O8 P2P 1 21/c 117.3212; 9.5487; 22.725
90; 95.214; 90
3743Santra, Biswajit; Mandal, Debdeep; Gupta, Vivek; Kalita, Pankaj; Kumar, Vierandra; Narayanan, Ramakirushnan Suriya; Dey, Atanu; Chrysochos, Nicolas; Mohammad, Akbar; Singh, Ajeet; Zimmer, Michael; Dalapati, Rana; Biswas, Shyam; Schulzke, Carola; Chandrasekhar, Vadapalli; Scheschkewitz, David; Jana, Anukul
Structural Diversity in Supramolecular Organization of Anionic Phosphate Monoesters: Role of Cations.
ACS omega, 2019, 4, 2118-2133
4514938 CIFC43 H50.4 N3 O7 PP -19.51; 13.081; 17.645
94.548; 104.485; 111.12
1947.3Santra, Biswajit; Mandal, Debdeep; Gupta, Vivek; Kalita, Pankaj; Kumar, Vierandra; Narayanan, Ramakirushnan Suriya; Dey, Atanu; Chrysochos, Nicolas; Mohammad, Akbar; Singh, Ajeet; Zimmer, Michael; Dalapati, Rana; Biswas, Shyam; Schulzke, Carola; Chandrasekhar, Vadapalli; Scheschkewitz, David; Jana, Anukul
Structural Diversity in Supramolecular Organization of Anionic Phosphate Monoesters: Role of Cations.
ACS omega, 2019, 4, 2118-2133
4514939 CIFC82 H84 N2 O11 P2P -110.8783; 17.6185; 19.0112
88.647; 83.371; 88.178
3616.8Santra, Biswajit; Mandal, Debdeep; Gupta, Vivek; Kalita, Pankaj; Kumar, Vierandra; Narayanan, Ramakirushnan Suriya; Dey, Atanu; Chrysochos, Nicolas; Mohammad, Akbar; Singh, Ajeet; Zimmer, Michael; Dalapati, Rana; Biswas, Shyam; Schulzke, Carola; Chandrasekhar, Vadapalli; Scheschkewitz, David; Jana, Anukul
Structural Diversity in Supramolecular Organization of Anionic Phosphate Monoesters: Role of Cations.
ACS omega, 2019, 4, 2118-2133
4514940 CIFC86 H102 Mg N6 O14 P2P 1 21/n 19.8697; 28.1617; 14.3794
90; 100.735; 90
3926.77Santra, Biswajit; Mandal, Debdeep; Gupta, Vivek; Kalita, Pankaj; Kumar, Vierandra; Narayanan, Ramakirushnan Suriya; Dey, Atanu; Chrysochos, Nicolas; Mohammad, Akbar; Singh, Ajeet; Zimmer, Michael; Dalapati, Rana; Biswas, Shyam; Schulzke, Carola; Chandrasekhar, Vadapalli; Scheschkewitz, David; Jana, Anukul
Structural Diversity in Supramolecular Organization of Anionic Phosphate Monoesters: Role of Cations.
ACS omega, 2019, 4, 2118-2133
4514941 CIFC82 H92 Mg N4 O12 P2C 1 2/c 133.4738; 10.2253; 25.1238
90; 101.698; 90
8420.8Santra, Biswajit; Mandal, Debdeep; Gupta, Vivek; Kalita, Pankaj; Kumar, Vierandra; Narayanan, Ramakirushnan Suriya; Dey, Atanu; Chrysochos, Nicolas; Mohammad, Akbar; Singh, Ajeet; Zimmer, Michael; Dalapati, Rana; Biswas, Shyam; Schulzke, Carola; Chandrasekhar, Vadapalli; Scheschkewitz, David; Jana, Anukul
Structural Diversity in Supramolecular Organization of Anionic Phosphate Monoesters: Role of Cations.
ACS omega, 2019, 4, 2118-2133
4514942 CIFC25 H26 Cl2 N2 O6P 21 21 2111.4475; 12.6239; 17.9127
90; 90; 90
2588.6Ravi Kumar, G.; Ramesh, Boora; Yarlagadda, Suresh; Sridhar, Balasubramanian; Reddy, B. V. Subba
Organocatalytic Enantioselective Mannich Reaction: Direct Access to Chiral β-Amino Esters.
ACS omega, 2019, 4, 2168-2177
4514943 CIFC24 H25 N3 O8P b c a13.1762; 17.925; 20.5378
90; 90; 90
4850.69Ravi Kumar, G.; Ramesh, Boora; Yarlagadda, Suresh; Sridhar, Balasubramanian; Reddy, B. V. Subba
Organocatalytic Enantioselective Mannich Reaction: Direct Access to Chiral β-Amino Esters.
ACS omega, 2019, 4, 2168-2177
4514944 CIFC37 H21 Cl3 Cu N4 O10C c c a :217.1736; 28.5197; 15.4911
90; 90; 90
7587.3Li, Guo-Bi; Song, Bai-Qiao; Wang, Shi-Qiang; Pei, Ling-Min; Liu, Sheng-Gui; Song, Jiang-Li; Yang, Qing-Yuan
Selective Adsorption of Water, Methanol, and Ethanol by Naphthalene Diimide-Based Coordination Polymers with Constructed Open Cu<sup>2+</sup> Metal Sites and Separation of Ethanol/Acetonitrile.
ACS omega, 2019, 4, 1995-2000
4514945 CIFC34 H18 Cu N4 O14C c c a :217.033; 28.521; 15.29
90; 90; 90
7428Li, Guo-Bi; Song, Bai-Qiao; Wang, Shi-Qiang; Pei, Ling-Min; Liu, Sheng-Gui; Song, Jiang-Li; Yang, Qing-Yuan
Selective Adsorption of Water, Methanol, and Ethanol by Naphthalene Diimide-Based Coordination Polymers with Constructed Open Cu<sup>2+</sup> Metal Sites and Separation of Ethanol/Acetonitrile.
ACS omega, 2019, 4, 1995-2000
4514946 CIFC34 H20 Cu N4 O11C c c a :217.354; 28.747; 15.0069
90; 90; 90
7486.6Li, Guo-Bi; Song, Bai-Qiao; Wang, Shi-Qiang; Pei, Ling-Min; Liu, Sheng-Gui; Song, Jiang-Li; Yang, Qing-Yuan
Selective Adsorption of Water, Methanol, and Ethanol by Naphthalene Diimide-Based Coordination Polymers with Constructed Open Cu<sup>2+</sup> Metal Sites and Separation of Ethanol/Acetonitrile.
ACS omega, 2019, 4, 1995-2000
4514947 CIFC8 H5P 1 21/n 16.5476; 5.9893; 14.4785
90; 103.07; 90
553.07Singh, Mala; Singh, Anoop S.; Mishra, Nidhi; Agrahari, Anand K.; Tiwari, Vinod K.
Benzotriazole as an Efficient Ligand in Cu-Catalyzed Glaser Reaction.
ACS omega, 2019, 4, 2418-2424
4514948 CIFC34 H26 Mn2 N2 O11 Se2P 1 21/c 111.7532; 14.9001; 20.9384
90; 105.744; 90
3529.2Kumar, Udit; Roy, Sritama; Jha, Raushan Kumar; Vidhyapriya, Pitchavel; Sakthivel, Natarajan; Manimaran, Bala.
Selenolato-Bridged Manganese(I)-Based Dinuclear Metallacycles as Potential Anticancer Agents and Photo-CORMs
ACS Omega, 2019, 4, 1923
4514949 CIFC23 H21 Cl3 F N3 O7P -17.1303; 11.687; 15.7104
82.5101; 82.4547; 88.0256
1286.57Chaudhari, Prakash D.; Hong, Bor-Cherng; Wen, Chao-Lin; Lee, Gene-Hsiang
Asymmetric Synthesis of Spirocyclopentane Oxindoles Containing Four Consecutive Stereocenters and Quaternary α-Nitro Esters via Organocatalytic Enantioselective Michael-Michael Cascade Reactions.
ACS omega, 2019, 4, 655-667
4514950 CIFC23 H23 N3 O7P 1 21/c 111.74; 11.8392; 16.8209
90; 109.766; 90
2200.23Chaudhari, Prakash D.; Hong, Bor-Cherng; Wen, Chao-Lin; Lee, Gene-Hsiang
Asymmetric Synthesis of Spirocyclopentane Oxindoles Containing Four Consecutive Stereocenters and Quaternary α-Nitro Esters via Organocatalytic Enantioselective Michael-Michael Cascade Reactions.
ACS omega, 2019, 4, 655-667
4514951 CIFC20 H18 Br N3 O5P 21 21 215.8847; 10.0526; 31.9302
90; 90; 90
1888.88Chaudhari, Prakash D.; Hong, Bor-Cherng; Wen, Chao-Lin; Lee, Gene-Hsiang
Asymmetric Synthesis of Spirocyclopentane Oxindoles Containing Four Consecutive Stereocenters and Quaternary α-Nitro Esters via Organocatalytic Enantioselective Michael-Michael Cascade Reactions.
ACS omega, 2019, 4, 655-667
4514952 CIFC22 H21 N3 O7P 1 21/c 112.6555; 32.3648; 10.778
90; 104.647; 90
4271.13Chaudhari, Prakash D.; Hong, Bor-Cherng; Wen, Chao-Lin; Lee, Gene-Hsiang
Asymmetric Synthesis of Spirocyclopentane Oxindoles Containing Four Consecutive Stereocenters and Quaternary α-Nitro Esters via Organocatalytic Enantioselective Michael-Michael Cascade Reactions.
ACS omega, 2019, 4, 655-667
4514953 CIFC23.5 H23.5 Cl1.5 N3 O7P 21 21 212.1872; 19.6134; 10.1516
90; 90; 90
2426.56Chaudhari, Prakash D.; Hong, Bor-Cherng; Wen, Chao-Lin; Lee, Gene-Hsiang
Asymmetric Synthesis of Spirocyclopentane Oxindoles Containing Four Consecutive Stereocenters and Quaternary α-Nitro Esters via Organocatalytic Enantioselective Michael-Michael Cascade Reactions.
ACS omega, 2019, 4, 655-667
4514954 CIFC20 H18 Br N3 O5P -110.694; 10.6945; 18.4813
104.658; 95.9501; 99.2596
1995.01Chaudhari, Prakash D.; Hong, Bor-Cherng; Wen, Chao-Lin; Lee, Gene-Hsiang
Asymmetric Synthesis of Spirocyclopentane Oxindoles Containing Four Consecutive Stereocenters and Quaternary α-Nitro Esters via Organocatalytic Enantioselective Michael-Michael Cascade Reactions.
ACS omega, 2019, 4, 655-667
4514955 CIFC23 H23 N3 O7P 1 21/c 17.2684; 24.3971; 12.3277
90; 93.9065; 90
2180.97Chaudhari, Prakash D.; Hong, Bor-Cherng; Wen, Chao-Lin; Lee, Gene-Hsiang
Asymmetric Synthesis of Spirocyclopentane Oxindoles Containing Four Consecutive Stereocenters and Quaternary α-Nitro Esters via Organocatalytic Enantioselective Michael-Michael Cascade Reactions.
ACS omega, 2019, 4, 655-667
4514956 CIFC20 H19 N3 O5P 21 21 219.5902; 9.6661; 20.341
90; 90; 90
1885.61Chaudhari, Prakash D.; Hong, Bor-Cherng; Wen, Chao-Lin; Lee, Gene-Hsiang
Asymmetric Synthesis of Spirocyclopentane Oxindoles Containing Four Consecutive Stereocenters and Quaternary α-Nitro Esters via Organocatalytic Enantioselective Michael-Michael Cascade Reactions.
ACS omega, 2019, 4, 655-667
4514957 CIFC24 H25 N3 O7P 1 21/n 111.4775; 29.4193; 14.3936
90; 108.357; 90
4612.8Chaudhari, Prakash D.; Hong, Bor-Cherng; Wen, Chao-Lin; Lee, Gene-Hsiang
Asymmetric Synthesis of Spirocyclopentane Oxindoles Containing Four Consecutive Stereocenters and Quaternary α-Nitro Esters via Organocatalytic Enantioselective Michael-Michael Cascade Reactions.
ACS omega, 2019, 4, 655-667
4514958 CIFC20 H19 N3 O5P 1 21/n 19.2665; 10.5833; 17.9618
90; 90.9476; 90
1761.28Chaudhari, Prakash D.; Hong, Bor-Cherng; Wen, Chao-Lin; Lee, Gene-Hsiang
Asymmetric Synthesis of Spirocyclopentane Oxindoles Containing Four Consecutive Stereocenters and Quaternary α-Nitro Esters via Organocatalytic Enantioselective Michael-Michael Cascade Reactions.
ACS omega, 2019, 4, 655-667
4514959 CIFC48 H48 Br2 N6 O16P -111.3435; 14.1708; 17.3486
105.216; 96.8216; 109.162
2476.78Chaudhari, Prakash D.; Hong, Bor-Cherng; Wen, Chao-Lin; Lee, Gene-Hsiang
Asymmetric Synthesis of Spirocyclopentane Oxindoles Containing Four Consecutive Stereocenters and Quaternary α-Nitro Esters via Organocatalytic Enantioselective Michael-Michael Cascade Reactions.
ACS omega, 2019, 4, 655-667
4514960 CIFC55 H42 N2 O2 SC 1 c 123.749; 31.2851; 17.9917
90; 108.379; 90
12685.8Rao, Jiancheng; Zhao, Chenyang; Wang, Yanping; Bai, Keyan; Wang, Shumeng; Ding, Junqiao; Wang, Lixiang
Achieving Deep-Blue Thermally Activated Delayed Fluorescence in Nondoped Organic Light-Emitting Diodes through a Spiro-Blocking Strategy.
ACS omega, 2019, 4, 1861-1867
4514961 CIFC8 H10 N2 O3 SP 1 21/c 112.2404; 9.0337; 8.8173
90; 97.116; 90
967.47Chen, Zhengwang; Liu, Botao; Liang, Pei; Luo, Haiqing; Zheng, Jing; Wen, Xiaowei; Liu, Tanggao; Luo, Guotian; Ye, Min
Construction of N-S and C-N Bonds from Reactions of Benzofuroxans with DMSO or THF.
ACS omega, 2019, 4, 281-291
4514962 CIFC10 H11 I N2 O3P b c a10.1121; 9.0764; 24.912
90; 90; 90
2286.5Chen, Zhengwang; Liu, Botao; Liang, Pei; Luo, Haiqing; Zheng, Jing; Wen, Xiaowei; Liu, Tanggao; Luo, Guotian; Ye, Min
Construction of N-S and C-N Bonds from Reactions of Benzofuroxans with DMSO or THF.
ACS omega, 2019, 4, 281-291
4514963 CIFC30 H34 Cl N O5P -111.2031; 11.2959; 12.3335
75.867; 84.541; 68.411
1407.3Dwari, Soumita; Jana, Chandan K.
Regio- and Enantioselective (Het)arylation of β-Alkenyl Pyrroline to α-Aryl-β-alkenyl Pyrrolidines.
ACS omega, 2019, 4, 2445-2454
4514964 CIFC26 H24 O5P 1 21/c 14.6276; 44.886; 9.6881
90; 94.437; 90
2006.33Paymode, Dinesh J.; Ramana, Chepuri V.
Studies toward the Total Synthesis of Parvifolals A/B: An Intramolecular <i>o</i>-Quinone Methide [4 + 2]-Cycloaddition To Construct the Central Tetracyclic Core.
ACS omega, 2019, 4, 810-818
4514965 CIFC26 H26 O5P b c a14.342; 10.8063; 27.4777
90; 90; 90
4258.6Paymode, Dinesh J.; Ramana, Chepuri V.
Studies toward the Total Synthesis of Parvifolals A/B: An Intramolecular <i>o</i>-Quinone Methide [4 + 2]-Cycloaddition To Construct the Central Tetracyclic Core.
ACS omega, 2019, 4, 810-818
4514966 CIFC15 H19 Cl N2 O PtP 1 21/n 114.734; 6.879; 15.543
90; 102.27; 90
1539Azizpoor Fard, Mahmood; Behnia, Ava; Puddephatt, Richard J.
Models for Cooperative Catalysis: Oxidative Addition Reactions of Dimethylplatinum(II) Complexes with Ligands Having Both NH and OH Functionality.
ACS omega, 2019, 4, 257-268
4514967 CIFC15 H22 N2 O2 PtP 1 21/n 19.289; 12.287; 14.269
90; 108.793; 90
1541.8Azizpoor Fard, Mahmood; Behnia, Ava; Puddephatt, Richard J.
Models for Cooperative Catalysis: Oxidative Addition Reactions of Dimethylplatinum(II) Complexes with Ligands Having Both NH and OH Functionality.
ACS omega, 2019, 4, 257-268
4514968 CIFC27 H32 N4 O2 PtP 1 21/c 113.594; 20.593; 18.051
90; 97.012; 90
5015Azizpoor Fard, Mahmood; Behnia, Ava; Puddephatt, Richard J.
Models for Cooperative Catalysis: Oxidative Addition Reactions of Dimethylplatinum(II) Complexes with Ligands Having Both NH and OH Functionality.
ACS omega, 2019, 4, 257-268
4514969 CIFC15 H21 I N2 O PtP 1 21/n 112.6298; 8.035; 16.7136
90; 102.705; 90
1654.6Azizpoor Fard, Mahmood; Behnia, Ava; Puddephatt, Richard J.
Models for Cooperative Catalysis: Oxidative Addition Reactions of Dimethylplatinum(II) Complexes with Ligands Having Both NH and OH Functionality.
ACS omega, 2019, 4, 257-268
4514970 CIFC15 H21 I N2 O PtP 21 21 218.607; 10.031; 19.09
90; 90; 90
1648.2Azizpoor Fard, Mahmood; Behnia, Ava; Puddephatt, Richard J.
Models for Cooperative Catalysis: Oxidative Addition Reactions of Dimethylplatinum(II) Complexes with Ligands Having Both NH and OH Functionality.
ACS omega, 2019, 4, 257-268
4514971 CIFC14 H20 N2 O3 PtP 1 21/n 110.994; 17.573; 15.289
90; 98.994; 90
2917Azizpoor Fard, Mahmood; Behnia, Ava; Puddephatt, Richard J.
Models for Cooperative Catalysis: Oxidative Addition Reactions of Dimethylplatinum(II) Complexes with Ligands Having Both NH and OH Functionality.
ACS omega, 2019, 4, 257-268
4514972 CIFC14 H22 N2 O4 PtP -18.1553; 9.9572; 11.011
112.204; 107.551; 96.626
762.2Azizpoor Fard, Mahmood; Behnia, Ava; Puddephatt, Richard J.
Models for Cooperative Catalysis: Oxidative Addition Reactions of Dimethylplatinum(II) Complexes with Ligands Having Both NH and OH Functionality.
ACS omega, 2019, 4, 257-268
4514973 CIFC15 H24 N2 O4 PtP 1 21/n 111.584; 11.704; 13.061
90; 109.67; 90
1667Azizpoor Fard, Mahmood; Behnia, Ava; Puddephatt, Richard J.
Models for Cooperative Catalysis: Oxidative Addition Reactions of Dimethylplatinum(II) Complexes with Ligands Having Both NH and OH Functionality.
ACS omega, 2019, 4, 257-268
4514974 CIFC15 H19 I N2 O PtP -17.754; 7.966; 13.423
99.03; 101.68; 92.59
799.3Azizpoor Fard, Mahmood; Behnia, Ava; Puddephatt, Richard J.
Models for Cooperative Catalysis: Oxidative Addition Reactions of Dimethylplatinum(II) Complexes with Ligands Having Both NH and OH Functionality.
ACS omega, 2019, 4, 257-268
4514975 CIFC16 H26 N2 O5 PtP 1 21/c 110.42; 7.367; 23.668
90; 91.804; 90
1816Azizpoor Fard, Mahmood; Behnia, Ava; Puddephatt, Richard J.
Models for Cooperative Catalysis: Oxidative Addition Reactions of Dimethylplatinum(II) Complexes with Ligands Having Both NH and OH Functionality.
ACS omega, 2019, 4, 257-268
4514976 CIFC27 I N5 P2 PtP c a 2116.687; 7.538; 49.99
90; 90; 90
6288Singh, Khushwant; Gangrade, Ankit; Jana, Achintya; Mandal, Biman B.; Das, Neeladri
Design, Synthesis, Characterization, and Antiproliferative Activity of Organoplatinum Compounds Bearing a 1,2,3-Triazole Ring
ACS Omega, 2019, 4, 835
4514977 CIFC37 H31 Cl9 N6 O4P 1 21/c 110.5961; 25.9364; 15.8162
90; 108.823; 90
4114.22Knighton, Richard C.; Sharma, Krishna; Robertson, Naomi S.; Spring, David R.; Wills, Martin
Synthesis and Reactivity of a Bis-Strained Alkyne Derived from 1,1'-Biphenyl-2,2',6,6'-tetrol.
ACS omega, 2019, 4, 2160-2167
4514978 CIFC20 H14 N4 S2P 1 21/n 17.9848; 10.9219; 10.4925
90; 94.018; 90
912.79Peterson, Joshua P.; Zhang, Rui; Winter, Arthur H.
Effect of Structure on the Spin Switching and Magnetic Bistability of Solid-State Aryl Dicyanomethyl Monoradicals and Diradicals.
ACS omega, 2019, 4, 13538-13542

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