Crystallography Open Database

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1559567 CIFC49 H38 Cl2 Co F5 N3P -111.8773; 12.8721; 14.5308
97.115; 92.063; 98.641
2176.04Zhang, Qiuyue; Li, Zilong; Han, Mingyang; Xiang, Junfeng; Solan, Gregory A.; Ma, Yanping; Liang, Tongling; Sun, Wen-Hua
Fluorinated cobalt catalysts and their use in forming narrowly dispersed polyethylene waxes of high linearity and incorporating vinyl functionality
Catalysis Science & Technology, 2021, 11, 656-670
1559568 CIFC260 H220 Cl10 Co5 F25 N15P -120.2887; 22.5854; 30.0093
94.052; 105.348; 102.898
12802.4Zhang, Qiuyue; Li, Zilong; Han, Mingyang; Xiang, Junfeng; Solan, Gregory A.; Ma, Yanping; Liang, Tongling; Sun, Wen-Hua
Fluorinated cobalt catalysts and their use in forming narrowly dispersed polyethylene waxes of high linearity and incorporating vinyl functionality
Catalysis Science & Technology, 2021, 11, 656-670
1559569 CIFC75 H60 B Cl2 F24 N3 PdP -112.4888; 16.9952; 19.3546
69.171; 75.05; 81.715
3703.33Zheng, Handou; Zhong, Liu; Du, Cheng; Du, Wenbo; Cheung, Chi Shing; Ruan, Jingjing; Gao, Haiyang
Combining hydrogen bonding interactions with steric and electronic modifications for thermally robust α-diimine palladium catalysts toward ethylene (co)polymerization
Catalysis Science & Technology, 2021, 11, 124-135
1559570 CIFC41 H45 Br2 Cl N2 PdP 1 21/n 112.8172; 18.0795; 16.7528
90; 96.977; 90
3853.36Zheng, Handou; Zhong, Liu; Du, Cheng; Du, Wenbo; Cheung, Chi Shing; Ruan, Jingjing; Gao, Haiyang
Combining hydrogen bonding interactions with steric and electronic modifications for thermally robust α-diimine palladium catalysts toward ethylene (co)polymerization
Catalysis Science & Technology, 2021, 11, 124-135
1559571 CIFC44 H53 Cl3 N2 O2 PdP 1 21/n 111.7251; 18.4561; 19.821
90; 101.805; 90
4198.5Zheng, Handou; Zhong, Liu; Du, Cheng; Du, Wenbo; Cheung, Chi Shing; Ruan, Jingjing; Gao, Haiyang
Combining hydrogen bonding interactions with steric and electronic modifications for thermally robust α-diimine palladium catalysts toward ethylene (co)polymerization
Catalysis Science & Technology, 2021, 11, 124-135
1559572 CIFC41 H45 Cl3 N2 PdP -111.0716; 16.373; 21.6279
89.42; 76.403; 88.652
3809.6Zheng, Handou; Zhong, Liu; Du, Cheng; Du, Wenbo; Cheung, Chi Shing; Ruan, Jingjing; Gao, Haiyang
Combining hydrogen bonding interactions with steric and electronic modifications for thermally robust α-diimine palladium catalysts toward ethylene (co)polymerization
Catalysis Science & Technology, 2021, 11, 124-135
1559573 CIFC78 H67 B F24 I2 N3 PdP -113.006; 16.863; 19.2164
98.154; 96.07; 99.498
4078.6Zheng, Handou; Zhong, Liu; Du, Cheng; Du, Wenbo; Cheung, Chi Shing; Ruan, Jingjing; Gao, Haiyang
Combining hydrogen bonding interactions with steric and electronic modifications for thermally robust α-diimine palladium catalysts toward ethylene (co)polymerization
Catalysis Science & Technology, 2021, 11, 124-135
1559574 CIFC77.25 H66.5 B Cl0.5 F24 N3 O2 PdP -114.4315; 16.2211; 18.6665
109.704; 107.844; 95.369
3820.3Zheng, Handou; Zhong, Liu; Du, Cheng; Du, Wenbo; Cheung, Chi Shing; Ruan, Jingjing; Gao, Haiyang
Combining hydrogen bonding interactions with steric and electronic modifications for thermally robust α-diimine palladium catalysts toward ethylene (co)polymerization
Catalysis Science & Technology, 2021, 11, 124-135
1559575 CIFC41 H45 Cl I2 N2 PdP 1 21/c 110.0308; 19.7307; 20.2309
90; 101.055; 90
3929.69Zheng, Handou; Zhong, Liu; Du, Cheng; Du, Wenbo; Cheung, Chi Shing; Ruan, Jingjing; Gao, Haiyang
Combining hydrogen bonding interactions with steric and electronic modifications for thermally robust α-diimine palladium catalysts toward ethylene (co)polymerization
Catalysis Science & Technology, 2021, 11, 124-135
1559893 CIFC12 H14 Br2 OP 1 21/c 115.797; 10.6695; 7.533
90; 91.679; 90
1269.11Roemer, Max; Gonçales, Vinicius R.; Keaveney, Sinead T.; Pernik, Indrek; Lian, Jiaxin; Downes, James; Gooding, J. Justin; Messerle, Barbara A.
Carbon supported hybrid catalysts for controlled product selectivity in the hydrosilylation of alkynes
Catalysis Science & Technology, 2021, 11, 1888-1898
1559894 CIFC18 H22 N6 OP 1 21/c 114.654; 7.0476; 17.0806
90; 91.653; 90
1763.3Roemer, Max; Gonçales, Vinicius R.; Keaveney, Sinead T.; Pernik, Indrek; Lian, Jiaxin; Downes, James; Gooding, J. Justin; Messerle, Barbara A.
Carbon supported hybrid catalysts for controlled product selectivity in the hydrosilylation of alkynes
Catalysis Science & Technology, 2021, 11, 1888-1898
1559895 CIFC23 H32 N6 OP 1 21/n 15.4266; 52.494; 8.032
90; 107.835; 90
2178.1Roemer, Max; Gonçales, Vinicius R.; Keaveney, Sinead T.; Pernik, Indrek; Lian, Jiaxin; Downes, James; Gooding, J. Justin; Messerle, Barbara A.
Carbon supported hybrid catalysts for controlled product selectivity in the hydrosilylation of alkynes
Catalysis Science & Technology, 2021, 11, 1888-1898
1559971 CIFC20 H30 Fe N2 O4 Si2P 1 21/n 18.4055; 18.3319; 15.0466
90; 92.57; 90
2316.2Cingolani, Andrea; Gualandi, Isacco; Scavetta, Erika; Cesari, Cristiana; Zacchini, Stefano; Tonelli, Domenica; Zanotti, Valerio; Franchi, Paola; Lucarini, Marco; Sicilia, Emilia; Mazzone, Gloria; Nanni, Daniele; Mazzoni, Rita
Cyclopentadienone‒NHC iron(0) complexes as low valent electrocatalysts for water oxidation
Catalysis Science & Technology, 2021, 11, 1407-1418
1560073 CIFC18 H18 O3P 1 21 15.656; 8.202; 16.2422
90; 92.949; 90
752.49Mu, Yu; Zhang, Tao; Cheng, Yaping; Fu, Wenzhen; Wei, Zuting; Chen, Wanjun; Liu, Guodu
Efficient synthesis of tetrahydrofurans with chiral tertiary allylic alcohols catalyzed by Ni/P-chiral ligand DI-BIDIME
Catalysis Science & Technology, 2021, 11, 2306-2315
1560074 CIFC18 H18 O2P 21 21 216.5109; 8.5749; 26.234
90; 90; 90
1464.7Mu, Yu; Zhang, Tao; Cheng, Yaping; Fu, Wenzhen; Wei, Zuting; Chen, Wanjun; Liu, Guodu
Efficient synthesis of tetrahydrofurans with chiral tertiary allylic alcohols catalyzed by Ni/P-chiral ligand DI-BIDIME
Catalysis Science & Technology, 2021, 11, 2306-2315
1560075 CIFC23 H27 Al N2 O6P 1 21/c 18.9958; 12.8818; 19.2304
90; 96.615; 90
2213.62Diment, Wilfred T.; Stößer, Tim; Kerr, Ryan W. F.; Phanopoulos, Andreas; Durr, Christopher B.; Williams, Charlotte K.
Ortho-vanillin derived Al(iii) and Co(iii) catalyst systems for switchable catalysis using ε-decalactone, phthalic anhydride and cyclohexene oxide
Catalysis Science & Technology, 2021, 11, 1737-1745
1560076 CIFC23 H27 Co N2 O6P 1 21/c 18.9996; 12.8364; 19.0472
90; 96.745; 90
2185.15Diment, Wilfred T.; Stößer, Tim; Kerr, Ryan W. F.; Phanopoulos, Andreas; Durr, Christopher B.; Williams, Charlotte K.
Ortho-vanillin derived Al(iii) and Co(iii) catalyst systems for switchable catalysis using ε-decalactone, phthalic anhydride and cyclohexene oxide
Catalysis Science & Technology, 2021, 11, 1737-1745
1560077 CIFC23 H29 Al N2 O4P 21 21 217.869; 15.7511; 17.6113
90; 90; 90
2182.84Diment, Wilfred T.; Stößer, Tim; Kerr, Ryan W. F.; Phanopoulos, Andreas; Durr, Christopher B.; Williams, Charlotte K.
Ortho-vanillin derived Al(iii) and Co(iii) catalyst systems for switchable catalysis using ε-decalactone, phthalic anhydride and cyclohexene oxide
Catalysis Science & Technology, 2021, 11, 1737-1745
1560115 CIFC6 H8 Mo N4 O4C m c 2118.363; 3.83; 14.745
90; 90; 90
1037Amarante, Tatiana R.; Neves, Patrícia; Almeida Paz, Filipe A.; Gomes, Ana C.; Pillinger, Martyn; Valente, Anabela A.; Gonçalves, Isabel S.
Heterogeneous catalysis with an organic‒inorganic hybrid based on MoO3 chains decorated with 2,2′-biimidazole ligands
Catalysis Science & Technology, 2021, 11, 2214-2228
1560129 CIFC22 H19 N O3 S SeP 1 21 17.2473; 12.2693; 10.9251
90; 90.353; 90
971.43Hua, Jiawei; Bian, Mixue; Ma, Tao; Yang, Man; He, Wei; Yang, Zhao; Liu, ChengKou; Fang, Zheng; Guo, Kai
The sunlight-promoted aerobic selective cyclization of olefinic amides and diselenides
Catalysis Science & Technology, 2021, 11, 2299-2305
1560130 CIFC22 H19 N O3 S SeP 1 21/n 15.8297; 16.2078; 20.9813
90; 93.402; 90
1979Hua, Jiawei; Bian, Mixue; Ma, Tao; Yang, Man; He, Wei; Yang, Zhao; Liu, ChengKou; Fang, Zheng; Guo, Kai
The sunlight-promoted aerobic selective cyclization of olefinic amides and diselenides
Catalysis Science & Technology, 2021, 11, 2299-2305
1560262 CIFC57 H73 Cl2 N2 O3.5 P2 RuP 116.268; 17.763; 23.082
87.715; 81.35; 66.621
6051.3León, Félix; Comas-Vives, Aleix; Álvarez, Eleuterio; Pizzano, Antonio
A combined experimental and computational study to decipher complexity in the asymmetric hydrogenation of imines with Ru catalysts bearing atropisomerizable ligands
Catalysis Science & Technology, 2021, 11, 2497-2511
1560263 CIFC55 H68 Cl2 N2 O3 P2 RuP 41 21 214.0362; 14.0362; 55.098
90; 90; 90
10855León, Félix; Comas-Vives, Aleix; Álvarez, Eleuterio; Pizzano, Antonio
A combined experimental and computational study to decipher complexity in the asymmetric hydrogenation of imines with Ru catalysts bearing atropisomerizable ligands
Catalysis Science & Technology, 2021, 11, 2497-2511
1560264 CIFC55 H68 Cl2 N2 O3 P2 RuP 1 21 114.485; 13.276; 16.008
90; 104.344; 90
2982.4León, Félix; Comas-Vives, Aleix; Álvarez, Eleuterio; Pizzano, Antonio
A combined experimental and computational study to decipher complexity in the asymmetric hydrogenation of imines with Ru catalysts bearing atropisomerizable ligands
Catalysis Science & Technology, 2021, 11, 2497-2511
1560265 CIFC50 H58 Cl4 N2 O5 P2 RuC 1 2 129.604; 12.869; 29.396
90; 114.68; 90
10176León, Félix; Comas-Vives, Aleix; Álvarez, Eleuterio; Pizzano, Antonio
A combined experimental and computational study to decipher complexity in the asymmetric hydrogenation of imines with Ru catalysts bearing atropisomerizable ligands
Catalysis Science & Technology, 2021, 11, 2497-2511
1560266 CIFC123 H142 Cl10 F4 N4 O6 P4 Ru2P 113.3642; 15.0349; 18.4697
89.212; 76.738; 66.771
3307.09León, Félix; Comas-Vives, Aleix; Álvarez, Eleuterio; Pizzano, Antonio
A combined experimental and computational study to decipher complexity in the asymmetric hydrogenation of imines with Ru catalysts bearing atropisomerizable ligands
Catalysis Science & Technology, 2021, 11, 2497-2511
1560480 CIFC25 H24 O6 SnP b c a11.9618; 16.8603; 23.0411
90; 90; 90
4646.9Wolzak, Lukas A.; Hermans, Joen J.; de Vries, Folkert; van den Berg, Keimpe J.; Reek, Joost N. H.; Tromp, Moniek; Korstanje, Ties J.
Mechanistic elucidation of monoalkyltin(iv)-catalyzed esterification
Catalysis Science & Technology, 2021, 11, 3326-3332
1560497 CIFC18 H23 Cl Ir N O2P 21 21 218.2268; 14.3426; 14.7546
90; 90; 90
1740.95Gatto, Giordano; De Palo, Alice; Carrasco, Ana C.; Pizarro, Ana M.; Zacchini, Stefano; Pampaloni, Guido; Marchetti, Fabio; Macchioni, Alceo
Modulating the water oxidation catalytic activity of iridium complexes by functionalizing the Cp*-ancillary ligand: hints on the nature of the active species
Catalysis Science & Technology, 2021, 11, 2885-2895
1560498 CIFC30 H32 Cl4 F2 Ir2P -18.7487; 17.713; 20.308
73.261; 89.913; 83.794
2994.6Gatto, Giordano; De Palo, Alice; Carrasco, Ana C.; Pizarro, Ana M.; Zacchini, Stefano; Pampaloni, Guido; Marchetti, Fabio; Macchioni, Alceo
Modulating the water oxidation catalytic activity of iridium complexes by functionalizing the Cp*-ancillary ligand: hints on the nature of the active species
Catalysis Science & Technology, 2021, 11, 2885-2895
1561024 CIFC33 H48 I2 N2 O7 Zn2P 1 21 110.3649; 17.385; 10.4787
90; 93.802; 90
1884.04Deacy, Arron C.; Durr, Christopher B.; Kerr, Ryan W. F.; Williams, Charlotte K.
Heterodinuclear catalysts Zn(ii)/M and Mg(ii)/M, where M = Na(i), Ca(ii) or Cd(ii), for phthalic anhydride/cyclohexene oxide ring opening copolymerisation
Catalysis Science & Technology, 2021, 11, 3109-3118
1561025 CIFC33 H48 Ca I2 N2 O7 ZnP b c a13.906; 14.3422; 37.8508
90; 90; 90
7549.06Deacy, Arron C.; Durr, Christopher B.; Kerr, Ryan W. F.; Williams, Charlotte K.
Heterodinuclear catalysts Zn(ii)/M and Mg(ii)/M, where M = Na(i), Ca(ii) or Cd(ii), for phthalic anhydride/cyclohexene oxide ring opening copolymerisation
Catalysis Science & Technology, 2021, 11, 3109-3118
1561026 CIFC25 H32 Br Li Mg N2 O5P 1 21/c 112.3544; 10.9625; 19.5187
90; 90.048; 90
2643.52Deacy, Arron C.; Durr, Christopher B.; Kerr, Ryan W. F.; Williams, Charlotte K.
Heterodinuclear catalysts Zn(ii)/M and Mg(ii)/M, where M = Na(i), Ca(ii) or Cd(ii), for phthalic anhydride/cyclohexene oxide ring opening copolymerisation
Catalysis Science & Technology, 2021, 11, 3109-3118
1561027 CIFC63 H72 Mg3 N6 O12P n a 2126.6385; 12.1506; 18.5863
90; 90; 90
6015.9Deacy, Arron C.; Durr, Christopher B.; Kerr, Ryan W. F.; Williams, Charlotte K.
Heterodinuclear catalysts Zn(ii)/M and Mg(ii)/M, where M = Na(i), Ca(ii) or Cd(ii), for phthalic anhydride/cyclohexene oxide ring opening copolymerisation
Catalysis Science & Technology, 2021, 11, 3109-3118
1561028 CIFC42 H48 Li4 N4 O8P 41 21 211.2287; 11.2287; 32.691
90; 90; 90
4121.8Deacy, Arron C.; Durr, Christopher B.; Kerr, Ryan W. F.; Williams, Charlotte K.
Heterodinuclear catalysts Zn(ii)/M and Mg(ii)/M, where M = Na(i), Ca(ii) or Cd(ii), for phthalic anhydride/cyclohexene oxide ring opening copolymerisation
Catalysis Science & Technology, 2021, 11, 3109-3118
1561029 CIFC25 H32 I Li N2 O5 ZnP 1 21/c 112.2484; 11.1331; 19.8508
90; 91.174; 90
2706.34Deacy, Arron C.; Durr, Christopher B.; Kerr, Ryan W. F.; Williams, Charlotte K.
Heterodinuclear catalysts Zn(ii)/M and Mg(ii)/M, where M = Na(i), Ca(ii) or Cd(ii), for phthalic anhydride/cyclohexene oxide ring opening copolymerisation
Catalysis Science & Technology, 2021, 11, 3109-3118
1561030 CIFC42 H48 N4 O8 Zn2P 1 21/c 110.7086; 20.5174; 8.9876
90; 98.462; 90
1953.19Deacy, Arron C.; Durr, Christopher B.; Kerr, Ryan W. F.; Williams, Charlotte K.
Heterodinuclear catalysts Zn(ii)/M and Mg(ii)/M, where M = Na(i), Ca(ii) or Cd(ii), for phthalic anhydride/cyclohexene oxide ring opening copolymerisation
Catalysis Science & Technology, 2021, 11, 3109-3118
1561031 CIFC25 H30 Cd I2 Mg N4 O4P 1 21/c 110.7707; 17.2439; 19.6341
90; 90.981; 90
3646.1Deacy, Arron C.; Durr, Christopher B.; Kerr, Ryan W. F.; Williams, Charlotte K.
Heterodinuclear catalysts Zn(ii)/M and Mg(ii)/M, where M = Na(i), Ca(ii) or Cd(ii), for phthalic anhydride/cyclohexene oxide ring opening copolymerisation
Catalysis Science & Technology, 2021, 11, 3109-3118
1561032 CIFC33 H46 I2 N2 O7 Zn2P 1 21 110.3649; 17.385; 10.4787
90; 93.802; 90
1884.04Deacy, Arron C.; Durr, Christopher B.; Kerr, Ryan W. F.; Williams, Charlotte K.
Heterodinuclear catalysts Zn(ii)/M and Mg(ii)/M, where M = Na(i), Ca(ii) or Cd(ii), for phthalic anhydride/cyclohexene oxide ring opening copolymerisation
Catalysis Science & Technology, 2021, 11, 3109-3118
1561033 CIFC29 H40 Cd I2 N2 O6 ZnP -110.1985; 10.9552; 15.6105
86.416; 87.592; 73.094
1664.95Deacy, Arron C.; Durr, Christopher B.; Kerr, Ryan W. F.; Williams, Charlotte K.
Heterodinuclear catalysts Zn(ii)/M and Mg(ii)/M, where M = Na(i), Ca(ii) or Cd(ii), for phthalic anhydride/cyclohexene oxide ring opening copolymerisation
Catalysis Science & Technology, 2021, 11, 3109-3118
1561034 CIFC33 H48 I N2 Na O7 ZnP 1 21/c 121.0024; 10.5844; 15.9024
90; 91.002; 90
3534.53Deacy, Arron C.; Durr, Christopher B.; Kerr, Ryan W. F.; Williams, Charlotte K.
Heterodinuclear catalysts Zn(ii)/M and Mg(ii)/M, where M = Na(i), Ca(ii) or Cd(ii), for phthalic anhydride/cyclohexene oxide ring opening copolymerisation
Catalysis Science & Technology, 2021, 11, 3109-3118
1561035 CIFC37 H56 Br2 Mg2 N2 O8P 1 21/n 110.7118; 20.0019; 18.6537
90; 91.671; 90
3994.97Deacy, Arron C.; Durr, Christopher B.; Kerr, Ryan W. F.; Williams, Charlotte K.
Heterodinuclear catalysts Zn(ii)/M and Mg(ii)/M, where M = Na(i), Ca(ii) or Cd(ii), for phthalic anhydride/cyclohexene oxide ring opening copolymerisation
Catalysis Science & Technology, 2021, 11, 3109-3118
1561513 CIFC23 H37 Cl N P2 Rh S2P 1 21/c 118.425; 8.8088; 17.927
90; 113.42; 90
2669.89Hasche, Patrick; Haak, Julia; Anke, Felix; Kubis, Christoph; Baumann, Wolfgang; Drexler, Hans-Joachim; Jiao, Haijun; Beweries, Torsten
Dehydropolymerisation of methylamine borane using highly active rhodium(iii) bis(thiophosphinite) pincer complexes: catalytic and mechanistic insights
Catalysis Science & Technology, 2021, 11, 3514-3526
1561514 CIFC18 H32 Cl P2 Rh S2P 1 21/c 111.1268; 11.9807; 17.1003
90; 92.141; 90
2278Hasche, Patrick; Haak, Julia; Anke, Felix; Kubis, Christoph; Baumann, Wolfgang; Drexler, Hans-Joachim; Jiao, Haijun; Beweries, Torsten
Dehydropolymerisation of methylamine borane using highly active rhodium(iii) bis(thiophosphinite) pincer complexes: catalytic and mechanistic insights
Catalysis Science & Technology, 2021, 11, 3514-3526
1561515 CIFC35 H29 Cl N P2 Rh S2P 1 21/n 19.2984; 15.248; 22.7278
90; 100.479; 90
3168.65Hasche, Patrick; Haak, Julia; Anke, Felix; Kubis, Christoph; Baumann, Wolfgang; Drexler, Hans-Joachim; Jiao, Haijun; Beweries, Torsten
Dehydropolymerisation of methylamine borane using highly active rhodium(iii) bis(thiophosphinite) pincer complexes: catalytic and mechanistic insights
Catalysis Science & Technology, 2021, 11, 3514-3526
1562424 CIFC37 H27 Cr N O4 P2P 1 21/c 110.2734; 14.333; 21.7148
90; 99.339; 90
3155.09Wang, Zhichao; Liu, Lin; Ma, Xufeng; Liu, Yao; Mi, Puke; Liu, Zhen; Zhang, Jun
Effect of an additional donor on decene formation in ethylene oligomerization catalyzed by a Cr/PCCP system: a combined experimental and DFT study
Catalysis Science & Technology, 2021, 11, 4596-4604
1562548 CIFC33 H50 N2 Si2 Zr2P 1 21/c 116.1662; 12.7556; 16.3557
90; 96.7815; 90
3349.1Lindenau, Kevin; Jannsen, Nora; Rippke, Mirko; Al Hamwi, Hanan; Selle, Carmen; Drexler, Hans-Joachim; Spannenberg, Anke; Sawall, Mathias; Neymeyr, Klaus; Heller, Detlef; Reiß, Fabian; Beweries, Torsten
Mechanistic insights into dehydrocoupling of amine boranes using dinuclear zirconocene complexes
Catalysis Science & Technology, 2021, 11, 4034-4050
1562549 CIFC29 H40 Si2 Zr2P -18.4309; 8.6096; 10.3197
89.1575; 78.2307; 74.7766
706.99Lindenau, Kevin; Jannsen, Nora; Rippke, Mirko; Al Hamwi, Hanan; Selle, Carmen; Drexler, Hans-Joachim; Spannenberg, Anke; Sawall, Mathias; Neymeyr, Klaus; Heller, Detlef; Reiß, Fabian; Beweries, Torsten
Mechanistic insights into dehydrocoupling of amine boranes using dinuclear zirconocene complexes
Catalysis Science & Technology, 2021, 11, 4034-4050
1562550 CIFC33 H40 Si Zr2P 1 21/n 18.3405; 25.5764; 14.2103
90; 100.188; 90
2983.54Lindenau, Kevin; Jannsen, Nora; Rippke, Mirko; Al Hamwi, Hanan; Selle, Carmen; Drexler, Hans-Joachim; Spannenberg, Anke; Sawall, Mathias; Neymeyr, Klaus; Heller, Detlef; Reiß, Fabian; Beweries, Torsten
Mechanistic insights into dehydrocoupling of amine boranes using dinuclear zirconocene complexes
Catalysis Science & Technology, 2021, 11, 4034-4050
1562551 CIFC30.11 H41.33 Cl0.89 Si2 Zr2P -112.9147; 16.0454; 16.0971
73.455; 74.142; 82.668
3071.4Lindenau, Kevin; Jannsen, Nora; Rippke, Mirko; Al Hamwi, Hanan; Selle, Carmen; Drexler, Hans-Joachim; Spannenberg, Anke; Sawall, Mathias; Neymeyr, Klaus; Heller, Detlef; Reiß, Fabian; Beweries, Torsten
Mechanistic insights into dehydrocoupling of amine boranes using dinuclear zirconocene complexes
Catalysis Science & Technology, 2021, 11, 4034-4050
1562893 CIFC25 H28 Cl N O2 OsP 1 21/c 19.4652; 9.6082; 24.647
90; 90.999; 90
2241.1Biriukov, Klim O.; Vinogradov, Mikhail M.; Afanasyev, Oleg I.; Vasilyev, Dmitry V.; Tsygankov, Alexey A.; Godovikova, Maria; Nelyubina, Yulia V.; Loginov, Dmitry A.; Chusov, Denis
Carbon monoxide-driven osmium catalyzed reductive amination harvesting WGSR power
Catalysis Science & Technology, 2021, 11, 4922-4930
1562894 CIFC26 H16 Cl2 N2 O2 OsP 1 21/n 16.961; 19.454; 16.217
90; 95.607; 90
2185.6Biriukov, Klim O.; Vinogradov, Mikhail M.; Afanasyev, Oleg I.; Vasilyev, Dmitry V.; Tsygankov, Alexey A.; Godovikova, Maria; Nelyubina, Yulia V.; Loginov, Dmitry A.; Chusov, Denis
Carbon monoxide-driven osmium catalyzed reductive amination harvesting WGSR power
Catalysis Science & Technology, 2021, 11, 4922-4930
1563131 CIFC85 H71 Cl2 F8 Fe N3P 1 21/c 136.1891; 13.7667; 33.3782
90; 107.739; 90
15838.5Zhang, Qiuyue; Yang, Wenhong; Wang, Zheng; Solan, Gregory A.; Liang, Tongling; Sun, Wen-Hua
Doubly fused N,N,N-iron ethylene polymerization catalysts appended with fluoride substituents; probing catalytic performance via a combined experimental and MLR study
Catalysis Science & Technology, 2021, 11, 4605-4618
1563132 CIFC57 H51 Cl2 F4 Fe N3P 3114.6606; 14.6606; 22.0189
90; 90; 120
4098.55Zhang, Qiuyue; Yang, Wenhong; Wang, Zheng; Solan, Gregory A.; Liang, Tongling; Sun, Wen-Hua
Doubly fused N,N,N-iron ethylene polymerization catalysts appended with fluoride substituents; probing catalytic performance via a combined experimental and MLR study
Catalysis Science & Technology, 2021, 11, 4605-4618
1563133 CIFC58 H53 Cl4 F4 Fe N3P 1 21/c 120.1017; 15.0497; 18.8974
90; 117.144; 90
5087.3Zhang, Qiuyue; Yang, Wenhong; Wang, Zheng; Solan, Gregory A.; Liang, Tongling; Sun, Wen-Hua
Doubly fused N,N,N-iron ethylene polymerization catalysts appended with fluoride substituents; probing catalytic performance via a combined experimental and MLR study
Catalysis Science & Technology, 2021, 11, 4605-4618
1563267 CIFC17 H22 N2 O2 SP 1 21/n 110.3118; 9.8749; 16.4567
90; 105.396; 90
1615.62Schulz, Emmanuelle; Abi Fayssal, Sandra; Naret, Timothée; Huc, Vincent; Buendia, Julien; Martini, Cyril
Benzyloxycalix[8]arene supported Pd-NHC cinnamyl complexes for Buchwald-Hartwig C-N cross-couplings
Catalysis Science & Technology, 2021
1564316 CIFC33 H35 Cl3 Cr N O P2P 1 21/c 116.1058; 12.1316; 17.2976
90; 100.554; 90
3322.6Wang, Zhichao; Liu, Lin; Ma, Xufeng; Liu, Yao; Mi, Puke; Liu, Zhen; Zhang, Jun
Effect of an additional donor on decene formation in ethylene oligomerization catalyzed by a Cr/PCCP system: a combined experimental and DFT study
Catalysis Science & Technology, 2021, 11, 4596-4604
1564378 CIFC56 H41 Cl Cu3 N15 O8P -112.4454; 13.2667; 16.8433
76.118; 87.983; 82.56
2677.01Benkó, Tímea; Lukács, Dávid; Frey, Krisztina; Németh, Miklós; Móricz, Márta M.; Liu, Dongyu; Kováts, Éva; May, Nóra V.; Vayssieres, Lionel; Li, Mingtao; Pap, József S.
Redox-inactive metal single-site molecular complexes: a new generation of electrocatalysts for oxygen evolution?
Catalysis Science & Technology, 2021, 11, 6411-6424
1564379 CIFC19 H18 Cl Cu N5 O6P -17.881; 10.7847; 12.077
91.738; 105.882; 95.876
980.28Benkó, Tímea; Lukács, Dávid; Frey, Krisztina; Németh, Miklós; Móricz, Márta M.; Liu, Dongyu; Kováts, Éva; May, Nóra V.; Vayssieres, Lionel; Li, Mingtao; Pap, József S.
Redox-inactive metal single-site molecular complexes: a new generation of electrocatalysts for oxygen evolution?
Catalysis Science & Technology, 2021, 11, 6411-6424
1564529 CIFC6 H15 N3 O3P 1 21/n 17.4094; 9.2008; 14.0802
90; 94.27; 90
957.22Mannisto, Jere K.; Pavlovic, Ljiljana; Tiainen, Tony; Nieger, Martin; Sahari, Aleksi; Hopmann, Kathrin H.; Repo, Timo
Mechanistic insights into carbamate formation from CO2 and amines: the role of guanidine–CO2 adducts
Catalysis Science & Technology, 2021, 11, 6877-6886
1564635 CIFC21 H26 Cl N2 RhP 1 21/n 112.4856; 10.6263; 15.2385
90; 98.181; 90
2001.2Sambou, Sasaline Salomon; Hromov, Roman; Ruzhylo, Illia; Wang, Hui; Allandrieu, Audrey; Sabatier, Cassandra; Coppel, Yannick; Daran, Jean-Claude; Gayet, Florence; Labande, Agnès; Manoury, Eric; Poli, Rinaldo
Amphiphilic polymeric nanoreactors containing Rh(i)–NHC complexes for the aqueous biphasic hydrogenation of alkenes
Catalysis Science & Technology, 2021, 11, 6811-6824
1564636 CIFC29 H34 Cl N2 RhP 1 21/c 117.8663; 15.711; 9.4111
90; 96.939; 90
2622.32Sambou, Sasaline Salomon; Hromov, Roman; Ruzhylo, Illia; Wang, Hui; Allandrieu, Audrey; Sabatier, Cassandra; Coppel, Yannick; Daran, Jean-Claude; Gayet, Florence; Labande, Agnès; Manoury, Eric; Poli, Rinaldo
Amphiphilic polymeric nanoreactors containing Rh(i)–NHC complexes for the aqueous biphasic hydrogenation of alkenes
Catalysis Science & Technology, 2021, 11, 6811-6824
1564764 CIFC60 H48 B F24 N3 NiP 1 21/n 112.6058; 36.234; 13.4322
90; 91.713; 90
6132.5Trofymchuk, Oleksandra S.; Ortega, Daniela E.; Cortés-Arriagada, Diego; Pereira, Alfredo; Daniliuc, Constantin G.; Klitzke, Clecio F.; Santos, Leonardo S.; Rojas, Rene S.
Neutral and cationic methallyl nickel complexes in alkene activation: a combined DFT, ESI-MS and chemometric approach
Catalysis Science & Technology, 2021, 11, 7475-7485
1564765 CIFC56 H76 Cl8 N4 Pd2P b c a14.2641; 19.0639; 22.615
90; 90; 90
6149.7Prima, Darya O.; Madiyeva, Malena; Burykina, Julia V.; Minyaev, Mikhail E.; Boiko, Daniil A.; Ananikov, Valentine P.
Evidence for “cocktail”-type catalysis in Buchwald–Hartwig reaction. A mechanistic study
Catalysis Science & Technology, 2021, 11, 7171-7188
1564766 CIFC54 H74 Br2 N4 O2 Pd2P 1 21 112.4263; 14.7841; 16.2288
90; 103.567; 90
2898.23Prima, Darya O.; Madiyeva, Malena; Burykina, Julia V.; Minyaev, Mikhail E.; Boiko, Daniil A.; Ananikov, Valentine P.
Evidence for “cocktail”-type catalysis in Buchwald–Hartwig reaction. A mechanistic study
Catalysis Science & Technology, 2021, 11, 7171-7188
1564767 CIFC56 H76 Br4 Cl4 N4 Pd2P b c a14.6417; 19.3275; 22.4789
90; 90; 90
6361.2Prima, Darya O.; Madiyeva, Malena; Burykina, Julia V.; Minyaev, Mikhail E.; Boiko, Daniil A.; Ananikov, Valentine P.
Evidence for “cocktail”-type catalysis in Buchwald–Hartwig reaction. A mechanistic study
Catalysis Science & Technology, 2021, 11, 7171-7188
1564768 CIFC55 H74 Cl2 I4 N4 Pd2P 1 21 112.5373; 15.0465; 16.1547
90; 100.064; 90
3000.57Prima, Darya O.; Madiyeva, Malena; Burykina, Julia V.; Minyaev, Mikhail E.; Boiko, Daniil A.; Ananikov, Valentine P.
Evidence for “cocktail”-type catalysis in Buchwald–Hartwig reaction. A mechanistic study
Catalysis Science & Technology, 2021, 11, 7171-7188
1564769 CIFC54.5 H75 Cl3 N4 O2 Pd2C 1 2/c 129.8011; 13.1568; 30.6277
90; 95.8028; 90
11947.2Prima, Darya O.; Madiyeva, Malena; Burykina, Julia V.; Minyaev, Mikhail E.; Boiko, Daniil A.; Ananikov, Valentine P.
Evidence for “cocktail”-type catalysis in Buchwald–Hartwig reaction. A mechanistic study
Catalysis Science & Technology, 2021, 11, 7171-7188
1564770 CIFC54 H74 I2 N4 O2 Pd2C 1 2/c 125.3642; 12.2415; 18.7483
90; 105.03; 90
5622.1Prima, Darya O.; Madiyeva, Malena; Burykina, Julia V.; Minyaev, Mikhail E.; Boiko, Daniil A.; Ananikov, Valentine P.
Evidence for “cocktail”-type catalysis in Buchwald–Hartwig reaction. A mechanistic study
Catalysis Science & Technology, 2021, 11, 7171-7188
1565037 CIFC23 H24 Cl Ir N2 O3P 1 21/c 112.4748; 16.3845; 21.7988
90; 94.3271; 90
4442.8Zhao, Li-Jun; Yin, Zequn; Shi, Yusheng; Sun, Wen; Sun, Libo; Su, Huijuan; Sun, Xun; Zhang, Weiling; Xia, Linyan; Qi, Caixia
A highly active Cp*Ir complex with an anionic N,N-donor chelate ligand catalyzes the robust regeneration of NADH under physiological conditions
Catalysis Science & Technology, 2021, 11, 7982-7991
1565038 CIFC36 H44 F8 Mn N6 O6 S2P 21 21 2110.2605; 15.2842; 26.1552
90; 90; 90
4101.75Masferrer-Rius, Eduard; Li, Fanshi; Lutz, Martin; Klein Gebbink, Robertus J. M.
Exploration of highly electron-rich manganese complexes in enantioselective oxidation catalysis; a focus on enantioselective benzylic oxidation
Catalysis Science & Technology, 2021, 11, 7751-7763
1565039 CIFC34 H48 F6 Fe N6 O7 S2P 21 21 2110.2594; 15.1887; 25.5178
90; 90; 90
3976.36Masferrer-Rius, Eduard; Li, Fanshi; Lutz, Martin; Klein Gebbink, Robertus J. M.
Exploration of highly electron-rich manganese complexes in enantioselective oxidation catalysis; a focus on enantioselective benzylic oxidation
Catalysis Science & Technology, 2021, 11, 7751-7763
1565040 CIFC10 H12 F N O3P 1 21 15.9384; 5.3053; 15.9518
90; 93.289; 90
501.734Zhang, Rui; Tan, Jiamu; Luo, Zhenzhen; Dong, Haihong; Ma, Ningshan; Liao, Cangsong
Stereo-selective synthesis of non-canonical γ-hydroxy-α-amino acids by enzymatic carbon–carbon bond formation
Catalysis Science & Technology, 2021, 11, 7380-7385
1565138 CIFC16 H23 Br Mn N3 O4P -17.94037; 10.1189; 12.8889
87.2665; 76.201; 70.5516
947.75Wang, Zheng; Lin, Qing; Ma, Ning; Liu, Song; Han, Mingyang; Yan, Xiuli; Liu, Qingbin; Solan, Gregory A.; Sun, Wen-Hua
Direct synthesis of ring-fused quinolines and pyridines catalyzed by NNHY-ligated manganese complexes (Y = NR2 or SR)
Catalysis Science & Technology, 2021, 11, 8026-8036
1565139 CIFC16 H20 Br Mn N2 O3 SP -17.71788; 10.1753; 13.2154
103.067; 101.353; 108.667
916.12Wang, Zheng; Lin, Qing; Ma, Ning; Liu, Song; Han, Mingyang; Yan, Xiuli; Liu, Qingbin; Solan, Gregory A.; Sun, Wen-Hua
Direct synthesis of ring-fused quinolines and pyridines catalyzed by NNHY-ligated manganese complexes (Y = NR2 or SR)
Catalysis Science & Technology, 2021, 11, 8026-8036
1565140 CIFC26 H24 Br Mn N2 O3 PP 1 21/n 19.1878; 28.171; 10.117
90; 105.67; 90
2521.3Wang, Zheng; Lin, Qing; Ma, Ning; Liu, Song; Han, Mingyang; Yan, Xiuli; Liu, Qingbin; Solan, Gregory A.; Sun, Wen-Hua
Direct synthesis of ring-fused quinolines and pyridines catalyzed by NNHY-ligated manganese complexes (Y = NR2 or SR)
Catalysis Science & Technology, 2021, 11, 8026-8036
1565172 CIFC20 H23 Br N4 O2 RuP 1 21/n 17.918; 17.8; 14.7128
90; 95.2089; 90
2065.06Illam, Praseetha Mathoor; Rit, Arnab
Electronically tuneable orthometalated RuII–NHC complexes as efficient catalysts for C–C and C–N bond formations via borrowing hydrogen strategy
Catalysis Science & Technology, 2022, 12, 67-74
1565173 CIFH4 N2 O3P m m n :25.446; 5.7605; 4.9406
90; 90; 90
154.99Nesterova, Oksana V.; Kuznetsov, Maxim L.; Pombeiro, Armando J. L.; Shul'pin, Georgiy B.; Nesterov, Dmytro S.
Homogeneous oxidation of C–H bonds with m-CPBA catalysed by a Co/Fe system: mechanistic insights from the point of view of the oxidant
Catalysis Science & Technology, 2022, 12, 282-299
1565174 CIFC19 H25 Co N2 O6P -317.5321; 17.5321; 10.9885
90; 90; 120
2925.1Nesterova, Oksana V.; Kuznetsov, Maxim L.; Pombeiro, Armando J. L.; Shul'pin, Georgiy B.; Nesterov, Dmytro S.
Homogeneous oxidation of C–H bonds with m-CPBA catalysed by a Co/Fe system: mechanistic insights from the point of view of the oxidant
Catalysis Science & Technology, 2022, 12, 282-299
1565488 CIFC43 H44 N2 O P2P 21 21 2110.0784; 11.7543; 30.5885
90; 90; 90
3623.65Chakrabortty, Soumyadeep; Konieczny, Katharina; Müller, Bernd H.; Spannenberg, Anke; Kamer, Paul C. J.; de Vries, Johannes G.
Betti base derived P-stereogenic phosphine-diamidophosphite ligands with a single atom spacer and their application in asymmetric catalysis
Catalysis Science & Technology, 2022, 12, 1392-1399
1565975 CIFC113 H252 F4 N6 O71 V24P 1 21/n 115.755; 25.4335; 21.5604
90; 92.253; 90
8632.7Kikukawa, Yuji; Sakamoto, Yui; Hirasawa, Hikari; Kurimoto, Yushi; Iwai, Hiroya; Hayashi, Yoshihito
Synthesis and oxidation catalysis of a difluoride-incorporated polyoxovanadate and isolation of active vanadium alkylperoxo species
Catalysis Science & Technology, 2022, 12, 2438-2445
1565976 CIFC59 H126 F2 N4 O34 V12P 1 21/n 117.7995; 23.6442; 20.9424
90; 91.945; 90
8808.6Kikukawa, Yuji; Sakamoto, Yui; Hirasawa, Hikari; Kurimoto, Yushi; Iwai, Hiroya; Hayashi, Yoshihito
Synthesis and oxidation catalysis of a difluoride-incorporated polyoxovanadate and isolation of active vanadium alkylperoxo species
Catalysis Science & Technology, 2022, 12, 2438-2445
1565977 CIFC52 H117 F2 N3 O32 V12P c a 2117.199; 21.6914; 54.059
90; 90; 90
20167.8Kikukawa, Yuji; Sakamoto, Yui; Hirasawa, Hikari; Kurimoto, Yushi; Iwai, Hiroya; Hayashi, Yoshihito
Synthesis and oxidation catalysis of a difluoride-incorporated polyoxovanadate and isolation of active vanadium alkylperoxo species
Catalysis Science & Technology, 2022, 12, 2438-2445
1566090 CIFC21 H16 Cl N4 O5 P RuC 1 2/c 114.06525; 25.1567; 13.9309
90; 100.051; 90
4853.59Bühler, Jan; Zurflüh, Jonas; Siol, Sebastian; Blacque, Olivier; Sévery, Laurent; Tilley, S. David
Electrochemical ruthenium-catalysed C–H activation in water through heterogenization of a molecular catalyst
Catalysis Science & Technology, 2022, 12, 1512-1519
1566239 CIFC45.27 H22 Al Cl2 Cr0.18 O15.33 Zr3P 6/m m m39.433; 39.433; 16.2564
90; 90; 120
21891Goetjen, Timothy A.; Knapp, Julia G.; Syed, Zoha H.; Hackler, Ryan A.; Zhang, Xuan; Delferro, Massimiliano; Hupp, Joseph T.; Farha, Omar K.
Ethylene polymerization with a crystallographically well-defined metal–organic framework supported catalyst
Catalysis Science & Technology, 2022, 12, 1619-1627
1566376 CIFC15 H19 Cl2 Co N3 OP -17.3409; 8.2378; 14.1911
77.242; 85.133; 77.261
815.8Sharma, Dipesh M.; Gouda, Chandrakant; Gonnade, Rajesh G.; Punji, Benudhar
Room temperature Z-selective hydrogenation of alkynes by hemilabile and non-innocent (NNN)Co(ii) catalysts
Catalysis Science & Technology, 2022, 12, 1843-1849
1566377 CIFC15 H21 Cl2 Co N3P 1 21/c 116.65; 24.8705; 7.9667
90; 90.49; 90
3298.8Sharma, Dipesh M.; Gouda, Chandrakant; Gonnade, Rajesh G.; Punji, Benudhar
Room temperature Z-selective hydrogenation of alkynes by hemilabile and non-innocent (NNN)Co(ii) catalysts
Catalysis Science & Technology, 2022, 12, 1843-1849
1566663 CIFC36 H37 K N3 O3 P2 Ru SP c a 2112.6529; 18.7504; 15.5836
90; 90; 90
3697.2Tossaint, Alex S.; Rebreyend, Christophe; Sinha, Vivek; Weber, Manuela; Canossa, Stefano; Pidko, Evgeny A.; Filonenko, Georgy A.
Two step activation of Ru-PN3P pincer catalysts for CO2 hydrogenation
Catalysis Science & Technology, 2022, 12, 2972-2977
1566664 CIFC100 H83 N6 O3 P6 Ru2P 1 21/c 114.8971; 22.753; 28.6172
90; 100.332; 90
9542.6Tossaint, Alex S.; Rebreyend, Christophe; Sinha, Vivek; Weber, Manuela; Canossa, Stefano; Pidko, Evgeny A.; Filonenko, Georgy A.
Two step activation of Ru-PN3P pincer catalysts for CO2 hydrogenation
Catalysis Science & Technology, 2022, 12, 2972-2977
1566665 CIFC51 H48 Cl N4 O2 P3 RuP b c n25.849; 19.5041; 21.0152
90; 90; 90
10595Tossaint, Alex S.; Rebreyend, Christophe; Sinha, Vivek; Weber, Manuela; Canossa, Stefano; Pidko, Evgeny A.; Filonenko, Georgy A.
Two step activation of Ru-PN3P pincer catalysts for CO2 hydrogenation
Catalysis Science & Technology, 2022, 12, 2972-2977
1566680 CIFC50.5 H47 Co O3 P2P 1 21/n 19.9652; 18.349; 23.3602
90; 96.462; 90
4244.3Martínez-Carrión, Alicia; Romero-Navarro, Andrés; Núñez-Rico, José Luis; Gutiérrez, Albert; Grabulosa, Arnald; Vidal-Ferran, Anton
Valorisation of mixtures of linear alkenes using cobalt-mediated isomerisation and hydroformylation chemistries
Catalysis Science & Technology, 2022, 12, 3219-3227
1566681 CIFC45 H32 Co2 O7 P2P -110.8578; 11.6947; 17.4282
106.744; 95.84; 112.496
1900.9Martínez-Carrión, Alicia; Romero-Navarro, Andrés; Núñez-Rico, José Luis; Gutiérrez, Albert; Grabulosa, Arnald; Vidal-Ferran, Anton
Valorisation of mixtures of linear alkenes using cobalt-mediated isomerisation and hydroformylation chemistries
Catalysis Science & Technology, 2022, 12, 3219-3227
1566688 CIFC29.4 H40.8 Cl8.8 N2 P2 PdP 1 21/n 115.262; 12.8154; 20.9917
90; 108.535; 90
3892.8Kucmierczyk, Peter; Behrens, Stephan; Kubis, Christoph; Baumann, Wolfgang; Wei, Zhihong; Jiao, Haijun; Dong, Kaiwu; Spannenberg, Anke; Neumann, Helfried; Jackstell, Ralf; Börner, Armin; Franke, Robert; Beller, Matthias
(In situ) spectroscopic studies on state-of-the-art Pd(ii) catalysts in solution for the alkoxycarbonylation of alkenes
Catalysis Science & Technology, 2022, 12, 3175-3189
1566689 CIFC26 H40 B2 N2 P2P -19.1591; 11.3142; 15.1394
103.273; 102.525; 105.201
1408Kucmierczyk, Peter; Behrens, Stephan; Kubis, Christoph; Baumann, Wolfgang; Wei, Zhihong; Jiao, Haijun; Dong, Kaiwu; Spannenberg, Anke; Neumann, Helfried; Jackstell, Ralf; Börner, Armin; Franke, Robert; Beller, Matthias
(In situ) spectroscopic studies on state-of-the-art Pd(ii) catalysts in solution for the alkoxycarbonylation of alkenes
Catalysis Science & Technology, 2022, 12, 3175-3189
1566690 CIFC28 H34 F6 N2 O6 P2 Pd S2P -111.2734; 12.1729; 13.5903
73.9005; 72.8892; 73.6404
1671.4Kucmierczyk, Peter; Behrens, Stephan; Kubis, Christoph; Baumann, Wolfgang; Wei, Zhihong; Jiao, Haijun; Dong, Kaiwu; Spannenberg, Anke; Neumann, Helfried; Jackstell, Ralf; Börner, Armin; Franke, Robert; Beller, Matthias
(In situ) spectroscopic studies on state-of-the-art Pd(ii) catalysts in solution for the alkoxycarbonylation of alkenes
Catalysis Science & Technology, 2022, 12, 3175-3189
1566769 CIFC48 H28 Bi N4 O9P 21 21 2117.3; 17.4; 18.975
90; 90; 90
5711.9Xie, Dale; Wang, Sheng; Li, Shihao; Yang, Wenqing; Feng, Yi-Si
A two-dimensional Bi-based porphyrin metal–organic framework photocatalyst for white light-driven selective oxidation of sulfides
Catalysis Science & Technology, 2022, 12, 3254-3260
1566791 CIFC38 H63 In N2 O3P -111.4082; 13.035; 14.939
66.497; 68.941; 83.213
1900.3Bruckmoser, Jonas; Henschel, Daniel; Vagin, Sergei; Rieger, Bernhard
Combining high activity with broad monomer scope: indium salan catalysts in the ring-opening polymerization of various cyclic esters
Catalysis Science & Technology, 2022, 12, 3295-3302
1567084 CIFC24 H58 Cl10 Cr2 N10 P4P 1 21/c 111.9522; 13.5271; 14.8191
90; 104.592; 90
2318.65Lo, Quintin; Pye, Dominic; Gesslbauer, Sami; Sim, Ying; García, Felipe; White, Andrew J. P.; Britovsek, George J. P.
Single- and double-bridged PNP ligands in chromium-catalysed ethylene oligomerisation
Catalysis Science & Technology, 2022, 12, 4544-4551
1567085 CIFC32 H72 Cr2 Li4 O4P c c n9.9307; 17.6625; 22.0161
90; 90; 90
3861.6Lo, Quintin; Pye, Dominic; Gesslbauer, Sami; Sim, Ying; García, Felipe; White, Andrew J. P.; Britovsek, George J. P.
Single- and double-bridged PNP ligands in chromium-catalysed ethylene oligomerisation
Catalysis Science & Technology, 2022, 12, 4544-4551
1567086 CIFC24 H58 Cl10 Cr2 N10 P4P 1 21/c 19.3625; 12.7925; 19.2108
90; 96.406; 90
2286.51Lo, Quintin; Pye, Dominic; Gesslbauer, Sami; Sim, Ying; García, Felipe; White, Andrew J. P.; Britovsek, George J. P.
Single- and double-bridged PNP ligands in chromium-catalysed ethylene oligomerisation
Catalysis Science & Technology, 2022, 12, 4544-4551
1567159 CIFC56 H37 Co N5 PP -19.7214; 12.92; 17.269
77.514; 83.542; 79.876
2078.5Liu, Zheng-Yan; Lai, Jia-Wei; Yang, Gang; Ren, Bao-Ping; Lv, Zhou-Yan; Si, Li-Ping; Zhang, Hao; Liu, Hai-Yang
Electrocatalytic hydrogen production by CN– substituted cobalt triaryl corroles
Catalysis Science & Technology, 2022, 12, 5125-5135
1567160 CIFC57 H36 Co N6 PP -114.3899; 16.2551; 19.6213
91.265; 108.634; 94.679
4328.9Liu, Zheng-Yan; Lai, Jia-Wei; Yang, Gang; Ren, Bao-Ping; Lv, Zhou-Yan; Si, Li-Ping; Zhang, Hao; Liu, Hai-Yang
Electrocatalytic hydrogen production by CN– substituted cobalt triaryl corroles
Catalysis Science & Technology, 2022, 12, 5125-5135
1567179 CIFC12 H10 O2 Pb S2P 1 21/c 115.1207; 5.2004; 7.6325
90; 95.5358; 90
597.372Li, Yang; Cheng, Xiuyan; Li, Ze; Jin, Yigang; Sun, Yimeng; Zou, Ye; Liu, Liyao; Duan, Ran; Zhang, Jianling; Xu, Wei
Two highly crystalline coordination polymers with two-dimensional PbS networks for photocatalytic synthesis of imines
Catalysis Science & Technology, 2022, 12, 4851-4856
1567180 CIFC6 H4 Pb S2P 1 21/c 17.4789; 5.2068; 17.4623
90; 93.3828; 90
678.82Li, Yang; Cheng, Xiuyan; Li, Ze; Jin, Yigang; Sun, Yimeng; Zou, Ye; Liu, Liyao; Duan, Ran; Zhang, Jianling; Xu, Wei
Two highly crystalline coordination polymers with two-dimensional PbS networks for photocatalytic synthesis of imines
Catalysis Science & Technology, 2022, 12, 4851-4856
1567274 CIFC19 H15 F2 N OP 15.5106; 7.7117; 9.6692
70.09; 86.972; 85.438
384.97Liu, Zhen; Wei, Yin; Shi, Min
A concise method for cyclic gem-difluoroacyl scaffolds via visible-light-mediated redox-neutral cascade radical cyclization of alkenes
Catalysis Science & Technology, 2022, 12, 5325-5331
1567275 CIFC17 H17 F2 N OP 1 21/n 111.9237; 10.5309; 12.4165
90; 114.482; 90
1418.93Liu, Zhen; Wei, Yin; Shi, Min
A concise method for cyclic gem-difluoroacyl scaffolds via visible-light-mediated redox-neutral cascade radical cyclization of alkenes
Catalysis Science & Technology, 2022, 12, 5325-5331
1567424 CIFC66 H81 Br Cl12 N4 O2 P2 RuP 111.3315; 12.2669; 14.2038
77.65; 88.094; 75.63
1867.9Böth, Alexander D.; Sauer, Michael J.; Baratta, Walter; Kühn, Fritz E.
Abnormal NHC ruthenium catalysts: mechanistic investigations of their preparation and steric influence on catalytic performance
Catalysis Science & Technology, 2022, 12, 5597-5603
1567446 CIFC29 H33 N2 O2P 1 21/c 120.6047; 11.4378; 10.1417
90; 92.408; 90
2388.01Yang, Zhi-Wen; Chen, Jin-Mei; Qiu, Li-Qi; Xie, Wen-Jun; He, Liang-Nian
Solar energy-driven electrolysis with molecular catalysts for the reduction of carbon dioxide coupled with the oxidation of 5-hydroxymethylfurfural
Catalysis Science & Technology, 2022, 12, 5495-5500
1567491 CIFC22 H20 Cl2 N2 O2 SP 1 21/c 123.213; 6.0771; 30.525
90; 151.09; 90
2082Gurung, Bikram; Pradhan, Sajan; Sharma, Debesh; Bhujel, Deshaj; Basel, Siddhant; Chettri, Shivanand; Rasaily, Sagarmani; Pariyar, Anand; Tamang, Sudarsan
CsPbBr3 perovskite quantum dots as a visible light photocatalyst for cyclisation of diamines and amino alcohols: an efficient approach to synthesize imidazolidines, fused-imidazolidines and oxazolidines
Catalysis Science & Technology, 2022, 12, 5891-5898
1567535 CIFC28 H26 N4 O2 ZnP 1 2/c 19.7337; 6.0539; 21.73
90; 101.532; 90
1254.6D'Aniello, Sara; Laviéville, Sidonie; Santulli, Federica; Simon, Malaury; Sellitto, Michele; Tedesco, Consiglia; Thomas, Christophe M.; Mazzeo, Mina
Homoleptic phenoxy-imine pyridine zinc complexes: efficient catalysts for solvent free synthesis and chemical degradation of polyesters
Catalysis Science & Technology, 2022, 12, 6142-6154
1567536 CIFC36 H36 N4 O2 ZnP 1 2/n 19.911; 6.0729; 27.229
90; 93.877; 90
1635.1D'Aniello, Sara; Laviéville, Sidonie; Santulli, Federica; Simon, Malaury; Sellitto, Michele; Tedesco, Consiglia; Thomas, Christophe M.; Mazzeo, Mina
Homoleptic phenoxy-imine pyridine zinc complexes: efficient catalysts for solvent free synthesis and chemical degradation of polyesters
Catalysis Science & Technology, 2022, 12, 6142-6154
1567537 CIFC30 H30 N4 O4 ZnC 1 2/c 127.956; 5.988; 19.792
90; 123.7; 90
2756.4D'Aniello, Sara; Laviéville, Sidonie; Santulli, Federica; Simon, Malaury; Sellitto, Michele; Tedesco, Consiglia; Thomas, Christophe M.; Mazzeo, Mina
Homoleptic phenoxy-imine pyridine zinc complexes: efficient catalysts for solvent free synthesis and chemical degradation of polyesters
Catalysis Science & Technology, 2022, 12, 6142-6154
1567562 CIFC49 H46 B2 F8 N4 O P2 RuP 1 21/c 110.0485; 17.8373; 26.9426
90; 98.285; 90
4778.7Gong, Huihua; Cui, Tianhua; Liu, Zheyuan; Zheng, Yanling; Zheng, Xueli; Fu, Haiyan; Yuan, Maolin; Chen, Hua; Xu, Jiaqi; Li, Ruixiang
Nitrogen–nitrogen-functionalized N-heterocyclic carbene ruthenium(ii) complexes realized efficient CO2 hydrogenation to formate
Catalysis Science & Technology, 2022, 12, 6213-6218
1567563 CIFC32 H34 B F4 N4 O P RuP 1 21/n 117.8555; 10.37049; 18.2838
90; 110.261; 90
3176.13Gong, Huihua; Cui, Tianhua; Liu, Zheyuan; Zheng, Yanling; Zheng, Xueli; Fu, Haiyan; Yuan, Maolin; Chen, Hua; Xu, Jiaqi; Li, Ruixiang
Nitrogen–nitrogen-functionalized N-heterocyclic carbene ruthenium(ii) complexes realized efficient CO2 hydrogenation to formate
Catalysis Science & Technology, 2022, 12, 6213-6218
1567564 CIFC31 H32 Cl N4 O P RuP -117.5755; 19.7613; 21.9822
106.12; 103.92; 103.786
6727.3Gong, Huihua; Cui, Tianhua; Liu, Zheyuan; Zheng, Yanling; Zheng, Xueli; Fu, Haiyan; Yuan, Maolin; Chen, Hua; Xu, Jiaqi; Li, Ruixiang
Nitrogen–nitrogen-functionalized N-heterocyclic carbene ruthenium(ii) complexes realized efficient CO2 hydrogenation to formate
Catalysis Science & Technology, 2022, 12, 6213-6218
1567672 CIFC74 H80 Cl2 N4 Pd2P 1 2/n 122.26; 14.479; 22.541
90; 106.1; 90
6980Zhou, Tongliang; Gao, Pengcheng; Bisz, Elwira; Dziuk, Błażej; Lalancette, Roger; Szostak, Roman; Szostak, Michal
Well-defined, air- and moisture-stable palladium–imidazo[1,5-a]pyridin-3-ylidene complexes: a versatile catalyst platform for cross-coupling reactions by L-shaped NHC ligands
Catalysis Science & Technology, 2022, 12, 6581-6589
1567673 CIFC31 H37 Cl N2 PdP b c a15.8974; 16.5103; 21.77
90; 90; 90
5714Zhou, Tongliang; Gao, Pengcheng; Bisz, Elwira; Dziuk, Błażej; Lalancette, Roger; Szostak, Roman; Szostak, Michal
Well-defined, air- and moisture-stable palladium–imidazo[1,5-a]pyridin-3-ylidene complexes: a versatile catalyst platform for cross-coupling reactions by L-shaped NHC ligands
Catalysis Science & Technology, 2022, 12, 6581-6589
1567674 CIFC41 H47 Cl N2 PdP b c a19.238; 17.9782; 21.2489
90; 90; 90
7349.2Zhou, Tongliang; Gao, Pengcheng; Bisz, Elwira; Dziuk, Błażej; Lalancette, Roger; Szostak, Roman; Szostak, Michal
Well-defined, air- and moisture-stable palladium–imidazo[1,5-a]pyridin-3-ylidene complexes: a versatile catalyst platform for cross-coupling reactions by L-shaped NHC ligands
Catalysis Science & Technology, 2022, 12, 6581-6589
1567675 CIFC40 H47 Cl N2 PdP b c a14.159; 17.0852; 29.6394
90; 90; 90
7170Zhou, Tongliang; Gao, Pengcheng; Bisz, Elwira; Dziuk, Błażej; Lalancette, Roger; Szostak, Roman; Szostak, Michal
Well-defined, air- and moisture-stable palladium–imidazo[1,5-a]pyridin-3-ylidene complexes: a versatile catalyst platform for cross-coupling reactions by L-shaped NHC ligands
Catalysis Science & Technology, 2022, 12, 6581-6589
1567708 CIFC16 H14 N2 O2P 1 21/c 126.505; 5.5966; 9.4104
90; 98.519; 90
1380.5Dasgupta, Ayan; Guerzoni, Michael G.; Alotaibi, Nusaybah; van Ingen, Yara; Farshadfar, Kaveh; Richards, Emma; Ariafard, Alireza; Melen, Rebecca L.
Chemo- and regio-selective amidation of indoles with isocyanates using borane Lewis acids
Catalysis Science & Technology, 2022, 12, 5982-5990
1567709 CIFC15 H12 N2 OP 1 21/c 15.5956; 23.7388; 9.2195
90; 99.725; 90
1207.05Dasgupta, Ayan; Guerzoni, Michael G.; Alotaibi, Nusaybah; van Ingen, Yara; Farshadfar, Kaveh; Richards, Emma; Ariafard, Alireza; Melen, Rebecca L.
Chemo- and regio-selective amidation of indoles with isocyanates using borane Lewis acids
Catalysis Science & Technology, 2022, 12, 5982-5990
1567710 CIFC34 H13 B Cl F15 N2 OP -18.0666; 12.7868; 15.6641
77.581; 87.401; 78.419
1545.76Dasgupta, Ayan; Guerzoni, Michael G.; Alotaibi, Nusaybah; van Ingen, Yara; Farshadfar, Kaveh; Richards, Emma; Ariafard, Alireza; Melen, Rebecca L.
Chemo- and regio-selective amidation of indoles with isocyanates using borane Lewis acids
Catalysis Science & Technology, 2022, 12, 5982-5990
1567711 CIFC34 H14 B F15 N2 OP -17.9694; 12.4723; 15.5816
78.311; 86.618; 79.065
1488.76Dasgupta, Ayan; Guerzoni, Michael G.; Alotaibi, Nusaybah; van Ingen, Yara; Farshadfar, Kaveh; Richards, Emma; Ariafard, Alireza; Melen, Rebecca L.
Chemo- and regio-selective amidation of indoles with isocyanates using borane Lewis acids
Catalysis Science & Technology, 2022, 12, 5982-5990
1567712 CIFC8 H7 B Cl3 NC 1 2/m 115.121; 6.9264; 9.8879
90; 109.906; 90
973.7Dasgupta, Ayan; Guerzoni, Michael G.; Alotaibi, Nusaybah; van Ingen, Yara; Farshadfar, Kaveh; Richards, Emma; Ariafard, Alireza; Melen, Rebecca L.
Chemo- and regio-selective amidation of indoles with isocyanates using borane Lewis acids
Catalysis Science & Technology, 2022, 12, 5982-5990
1567713 CIFC36 H17 B Br Cl4 F10 N3 O2P -112.7275; 16.2624; 19.5564
69.141; 77.001; 87.734
3681.9Dasgupta, Ayan; Guerzoni, Michael G.; Alotaibi, Nusaybah; van Ingen, Yara; Farshadfar, Kaveh; Richards, Emma; Ariafard, Alireza; Melen, Rebecca L.
Chemo- and regio-selective amidation of indoles with isocyanates using borane Lewis acids
Catalysis Science & Technology, 2022, 12, 5982-5990
1567714 CIFC25 H25 Cl N2 O SiP -110.0506; 12.4111; 19.1784
99.504; 93.559; 90.568
2354.4Dasgupta, Ayan; Guerzoni, Michael G.; Alotaibi, Nusaybah; van Ingen, Yara; Farshadfar, Kaveh; Richards, Emma; Ariafard, Alireza; Melen, Rebecca L.
Chemo- and regio-selective amidation of indoles with isocyanates using borane Lewis acids
Catalysis Science & Technology, 2022, 12, 5982-5990
1567715 CIFC13 H26 N2 OC 1 2/c 116.5207; 9.9632; 34.818
90; 91.771; 90
5728.3Dasgupta, Ayan; Guerzoni, Michael G.; Alotaibi, Nusaybah; van Ingen, Yara; Farshadfar, Kaveh; Richards, Emma; Ariafard, Alireza; Melen, Rebecca L.
Chemo- and regio-selective amidation of indoles with isocyanates using borane Lewis acids
Catalysis Science & Technology, 2022, 12, 5982-5990
1567716 CIFC16 H14 N2 OP 1 21/c 122.5646; 13.0075; 8.9569
90; 95.53; 90
2616.7Dasgupta, Ayan; Guerzoni, Michael G.; Alotaibi, Nusaybah; van Ingen, Yara; Farshadfar, Kaveh; Richards, Emma; Ariafard, Alireza; Melen, Rebecca L.
Chemo- and regio-selective amidation of indoles with isocyanates using borane Lewis acids
Catalysis Science & Technology, 2022, 12, 5982-5990
1567717 CIFC13 H5 Cl F5 N OP 1 21/n 15.6086; 9.3087; 23.8205
90; 90.95; 90
1243.47Dasgupta, Ayan; Guerzoni, Michael G.; Alotaibi, Nusaybah; van Ingen, Yara; Farshadfar, Kaveh; Richards, Emma; Ariafard, Alireza; Melen, Rebecca L.
Chemo- and regio-selective amidation of indoles with isocyanates using borane Lewis acids
Catalysis Science & Technology, 2022, 12, 5982-5990
1567718 CIFC23 H18 Cl N3 O2P 21 21 215.7822; 12.3852; 27.1093
90; 90; 90
1941.4Dasgupta, Ayan; Guerzoni, Michael G.; Alotaibi, Nusaybah; van Ingen, Yara; Farshadfar, Kaveh; Richards, Emma; Ariafard, Alireza; Melen, Rebecca L.
Chemo- and regio-selective amidation of indoles with isocyanates using borane Lewis acids
Catalysis Science & Technology, 2022, 12, 5982-5990
1567777 CIFC24 H27 Cl2 N2 P ZnP -19.6677; 11.6496; 12.2679
109.146; 112.87; 91.797
1182.45Cao, Furong; Wang, Yun; Wang, Xing; Zhang, Wenjuan; Solan, Gregory A.; Wang, Rui; Ma, Yanping; Hao, Xiang; Sun, Wen-Hua
Zinc 8-aminotrihydroquinolines appended with pendant N-diphenylphosphinoethyl arms as exceptionally active catalysts for the ROP of ε-CL
Catalysis Science & Technology, 2022, 12, 6687-6703
1567778 CIFC29 H29 Cl2 N2 P ZnP 1 21/n 114.5983; 11.3593; 16.4355
90; 101.497; 90
2670.76Cao, Furong; Wang, Yun; Wang, Xing; Zhang, Wenjuan; Solan, Gregory A.; Wang, Rui; Ma, Yanping; Hao, Xiang; Sun, Wen-Hua
Zinc 8-aminotrihydroquinolines appended with pendant N-diphenylphosphinoethyl arms as exceptionally active catalysts for the ROP of ε-CL
Catalysis Science & Technology, 2022, 12, 6687-6703
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
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
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
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
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
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
1568329 CIFC12 H18 Br NP 1 21/c 18.1655; 10.6042; 14.4716
90; 102.495; 90
1223.4Stroek, Wowa; Hoareau, Lilian; Albrecht, Martin
From the bottle: simple iron salts for the efficient synthesis of pyrrolidines <i>via</i> catalytic C-H bond amination.
Catalysis science & technology, 2023, 13, 958-962
1568382 CIFC60 H64 B F24 Fe N3 O2 P2P 1 21/c 113.6976; 23.8148; 20.2227
90; 98.742; 90
6520.1Schlenker, Kevin; Casselman, Lillee K.; VanderLinden, Ryan T.; Saouma, Caroline T.
Large changes in hydricity as a function of charge and not metal in (PNP)M–H (de)hydrogenation catalysts that undergo metal–ligand cooperativity
Catalysis Science & Technology, 2023, 13, 1358-1368
1568383 CIFC36 H68 K N O4 P2 RuP 21 21 2112.158; 17.5241; 19.0088
90; 90; 90
4050Schlenker, Kevin; Casselman, Lillee K.; VanderLinden, Ryan T.; Saouma, Caroline T.
Large changes in hydricity as a function of charge and not metal in (PNP)M–H (de)hydrogenation catalysts that undergo metal–ligand cooperativity
Catalysis Science & Technology, 2023, 13, 1358-1368
1568404 CIFC74 H48.4 Cl15.6 Fe1.6 I2.4 N12P -120.6469; 23.6627; 24.8965
64.38; 69.27; 68.88
9942.9Yamada, Yasuyuki; Miwa, Yusuke; Toyoda, Yuka; Phung, Quan Manh; Oyama, Kin-ichi; Tanaka, Kentaro
Evaluation of CH4 oxidation activity of high-valent iron-oxo species of a μ-nitrido-bridged heterodimer of iron porphycene and iron phthalocyanine
Catalysis Science & Technology, 2023, 13, 1725-1734
1568560 CIFC16 H24 I N3 O5 RuP b c a14.031; 14.473; 19.564
90; 90; 90
3973Colaiezzi, Roberta; Saviozzi, Chiara; di Nicola, Nicola; Zacchini, Stefano; Pampaloni, Guido; Crucianelli, Marcello; Marchetti, Fabio; Di Giuseppe, Andrea; Biancalana, Lorenzo
Ruthenium(ii) arene complexes bearing simple dioxime ligands: effective catalysts for the one-pot transfer hydrogenation/N-methylation of nitroarenes with methanol
Catalysis Science & Technology, 2023, 13, 2160-2183
1568561 CIFC16 H28 Cl N3 O6 RuP c a 2110.1596; 11.7047; 16.363
90; 90; 90
1945.8Colaiezzi, Roberta; Saviozzi, Chiara; di Nicola, Nicola; Zacchini, Stefano; Pampaloni, Guido; Crucianelli, Marcello; Marchetti, Fabio; Di Giuseppe, Andrea; Biancalana, Lorenzo
Ruthenium(ii) arene complexes bearing simple dioxime ligands: effective catalysts for the one-pot transfer hydrogenation/N-methylation of nitroarenes with methanol
Catalysis Science & Technology, 2023, 13, 2160-2183
1568562 CIFC16 H28 Cl N2 O3.5 RuP 1 21/c 115.4589; 13.1592; 17.7332
90; 98.356; 90
3569.1Colaiezzi, Roberta; Saviozzi, Chiara; di Nicola, Nicola; Zacchini, Stefano; Pampaloni, Guido; Crucianelli, Marcello; Marchetti, Fabio; Di Giuseppe, Andrea; Biancalana, Lorenzo
Ruthenium(ii) arene complexes bearing simple dioxime ligands: effective catalysts for the one-pot transfer hydrogenation/N-methylation of nitroarenes with methanol
Catalysis Science & Technology, 2023, 13, 2160-2183
1568626 CIFC27 H20 Co O5 P2F d d 241.7016; 15.1215; 19.8592
90; 90; 90
12523Huang, Weiheng; Jackstell, Ralf; Spannenberg, Anke; Beller, Matthias
An improved cobalt-catalysed alkoxycarbonylation of olefins using secondary phosphine oxide promotors
Catalysis Science & Technology, 2023, 13, 2475-2479
1568705 CIFC21 H18 Cl4 N4 Ni O2P n a 2119.3515; 10.4522; 11.307
90; 90; 90
2287Bansal, Sadhna; Gonnade, Rajesh G.; Punji, Benudhar
Chemodivergent coupling of azoarenes with benzyl alcohols via a borrowing hydrogen strategy using a well-defined nickel catalyst
Catalysis Science & Technology, 2023, 13, 2705-2713
1568723 CIFC18 H27 B N2 O4 SP -16.4445; 11.458; 13.656
80.205; 85.649; 82.844
984.4Choi, Hyoju; Wang, Ruibin; Kim, Suyeon; Kim, Dongwook; Baik, Mu-Hyun; Park, Sehoon
Rhodium-catalyzed double hydroboration of pyridine: the origin of the chemo- and regioselectivities
Catalysis Science & Technology, 2023, 13, 2735-2747
1568724 CIFC18 H27 B N2 O4 SP 1 21/c 112.029; 14.49; 11.877
90; 95.143; 90
2061.8Choi, Hyoju; Wang, Ruibin; Kim, Suyeon; Kim, Dongwook; Baik, Mu-Hyun; Park, Sehoon
Rhodium-catalyzed double hydroboration of pyridine: the origin of the chemo- and regioselectivities
Catalysis Science & Technology, 2023, 13, 2735-2747
1568765 CIFC17 H19 N O2 SP 1 21/c 112.8925; 7.8461; 15.2747
90; 100.851; 90
1517.5Tokareva, Marina A.; Pernik, Indrek; Messerle, Barbara A.; Glukhareva, Tatiana V.; Keaveney, Sinead T.
The effect of the C5-substituent on regioselectivity in the Rh(i)-catalyzed intermolecular transannulation of 1,2,3-thiadiazoles with phenylacetylene
Catalysis Science & Technology, 2023, 13, 2772-2782
1568766 CIFC9 H7 N O2 S0.5P -18.8717; 8.9788; 10.5747
100.966; 100.107; 93.879
809.68Tokareva, Marina A.; Pernik, Indrek; Messerle, Barbara A.; Glukhareva, Tatiana V.; Keaveney, Sinead T.
The effect of the C5-substituent on regioselectivity in the Rh(i)-catalyzed intermolecular transannulation of 1,2,3-thiadiazoles with phenylacetylene
Catalysis Science & Technology, 2023, 13, 2772-2782
1568767 CIFC16 H18 N2 O2 SP 1 21/n 111.0494; 10.37004; 26.5033
90; 100.257; 90
2988.28Tokareva, Marina A.; Pernik, Indrek; Messerle, Barbara A.; Glukhareva, Tatiana V.; Keaveney, Sinead T.
The effect of the C5-substituent on regioselectivity in the Rh(i)-catalyzed intermolecular transannulation of 1,2,3-thiadiazoles with phenylacetylene
Catalysis Science & Technology, 2023, 13, 2772-2782
1568768 CIFC17 H21 N O2 SP 1 21/n 19.7409; 7.7066; 21.1913
90; 91.38; 90
1590.35Tokareva, Marina A.; Pernik, Indrek; Messerle, Barbara A.; Glukhareva, Tatiana V.; Keaveney, Sinead T.
The effect of the C5-substituent on regioselectivity in the Rh(i)-catalyzed intermolecular transannulation of 1,2,3-thiadiazoles with phenylacetylene
Catalysis Science & Technology, 2023, 13, 2772-2782
1568826 CIFC8 H17 Li O2I 41/a :219.3447; 19.3447; 10.3928
90; 90; 90
3889.2Deglmann, Peter; Machleit, Sara; Gallizioli, Cesare; Rupf, Susanne M.; Plajer, Alex J.
Lithium catalysed sequence selective ring opening terpolymerisation: a mechanistic study
Catalysis Science & Technology, 2023, 13, 2937-2945
1568827 CIFC8 H17 Li O SP -18.1843; 11.066; 13.037
113.372; 102.438; 98.398
1022.5Deglmann, Peter; Machleit, Sara; Gallizioli, Cesare; Rupf, Susanne M.; Plajer, Alex J.
Lithium catalysed sequence selective ring opening terpolymerisation: a mechanistic study
Catalysis Science & Technology, 2023, 13, 2937-2945
1568859 CIFC32 H26 N3 O P Pd SP -19.848; 11.6412; 14.0807
71.591; 74.372; 75.139
1448.83Clinton, Savarimuthu Selvan; Ramesh, Rengan; Malecki, Jan Grzegorz
Orthometallated Pd(ii) C^N^S pincer complex catalyzed sustainable synthesis of bis(indolyl)methanes via acceptorless dehydrogenative coupling of alcohols
Catalysis Science & Technology, 2023, 13, 3358-3365
1568889 CIFC12 H18 N4 O4 ZnP 1 21 19.374; 8.2061; 10.172
90; 90.621; 90
782.4Sahoo, Sangita; Manna, Subarna; Rit, Arnab
N-Heterocyclic carbene supported zinc catalysed N-formylation of diverse N–H functionalities with carbon dioxide under ambient conditions
Catalysis Science & Technology, 2023, 13, 3344-3350
1569186 CIFC46 H37 Br2 Cl2 N Ni O P2 S2P -18.874; 16.683; 16.979
118.128; 102.945; 94.354
2112Chen, Luo; Li, Tao; Xie, Bin; Lai, Chuan; Ji, Run-Wu; He, Jia-Yu; Cao, Jia-Xi; Liu, Meng-Nan; Li, Wei; Zhang, Dong-Liang
Electrocatalytic hydrogen evolution by robust square planar nickel complexes in an S2P2 coordination environment
Catalysis Science & Technology, 2023, 13, 3655-3666
1569187 CIFC47 H41 N Ni O P2 S2P -18.889; 14.156; 16.604
99.93; 100.826; 95.15
2005.2Chen, Luo; Li, Tao; Xie, Bin; Lai, Chuan; Ji, Run-Wu; He, Jia-Yu; Cao, Jia-Xi; Liu, Meng-Nan; Li, Wei; Zhang, Dong-Liang
Electrocatalytic hydrogen evolution by robust square planar nickel complexes in an S2P2 coordination environment
Catalysis Science & Technology, 2023, 13, 3655-3666
1569189 CIFC9 H21 Br3 N4P 43 21 29.9901; 9.9901; 15.6499
90; 90; 90
1561.89Qaroush, Abdussalam K.; Eftaiha, Ala'a F.; Al-Qaisi, Feda'a M.; Assaf, Khaleel I.; Hammad, Suhad B.; Al-Anati, Malak H.; Radwan, Enas S.; Awwadi, Firas F.
Newly synthesized imidazolium precursors for CO2 utilization and sequestration: aprotic versus protic salts
Catalysis Science & Technology, 2023, 13, 3245-3257
1569260 CIFC36 H46 Cl5 N O RuP 1 21/n 110.7816; 16.045; 21.2485
90; 100.265; 90
3617Sytniczuk, Adrian; Struzik, Filip; Purohit, Vishal; Grela, Karol; Kajetanowicz, Anna
Aza-Claisen rearrangement as a key step in synthesis of specialised anilines used in the production of efficient ethenolysis catalysts
Catalysis Science & Technology, 2023, 13, 3682-3688
1569261 CIFC20 H21 Br2 N3 O2P 1 21/c 110.7492; 21.4852; 8.9772
90; 94.765; 90
2066.1Zhang, Xiao; Bai, Fan; Li, Miaomiao; Ru, Huihui; Wang, Lanzhi
NiFe2O4@SiO2@PrNH2–DPA–CeCl3: a cerium-based magnetic nano dual-acid catalyst with high efficacy and recyclability for domino sequential synthesis of lactam ring-fused 1,5-benzodiazepines
Catalysis Science & Technology, 2023, 13, 3987-3999
1569288 CIFC4 H11 N O4P 1 21 15.8966; 14.2652; 7.4117
90; 98.338; 90
616.85Xu, Xuexia; Yang, Qin; Wang, Lanteng; Zheng, Jie; Gu, Yang; Xing, Xiwen; Zhou, Jiahai
Enzymatic hydrolysis of l-azetidine-2-carboxylate ring opening
Catalysis Science & Technology, 2023, 13, 3953-3962
1569289 CIFC66 H70 Au2 N6 OP -112.4705; 14.3086; 17.1528
103.775; 95.912; 101.539
2875.84Ma, Xinyuan; Voloshkin, Vladislav A.; Martynova, Ekaterina A.; Beliš, Marek; Peng, Min; Villa, Marco; Tzouras, Nikolaos V.; Janssens, Wim; Van Hecke, Kristof; Ceroni, Paola; Nolan, Steven P.
Novel dinuclear NHC–gold(i)-amido complexes and their application in energy transfer photocatalysis
Catalysis Science & Technology, 2023, 13, 4168-4175
1569290 CIFC56 H50 Au2 N6C 1 2/c 127.2565; 17.0998; 52.008
90; 101.377; 90
23763.6Ma, Xinyuan; Voloshkin, Vladislav A.; Martynova, Ekaterina A.; Beliš, Marek; Peng, Min; Villa, Marco; Tzouras, Nikolaos V.; Janssens, Wim; Van Hecke, Kristof; Ceroni, Paola; Nolan, Steven P.
Novel dinuclear NHC–gold(i)-amido complexes and their application in energy transfer photocatalysis
Catalysis Science & Technology, 2023, 13, 4168-4175
1569291 CIFC16 H32 F6 N PP n m a15.201; 9.7668; 13.4419
90; 90; 90
1995.7Killeen, Charles; Liu, Jie; Zijlstra, Harmen S.; Maass, Florian; Piers, James; Adams, Reid; Oliver, Allen; McIndoe, J. Scott
Competitive isomerization and catalyst decomposition during ring-closing metathesis
Catalysis Science & Technology, 2023, 13, 4000-4008
1569292 CIFC14 H28 F6 N PP 1 21/c 19.4663; 13.2301; 14.178
90; 93.998; 90
1771.3Killeen, Charles; Liu, Jie; Zijlstra, Harmen S.; Maass, Florian; Piers, James; Adams, Reid; Oliver, Allen; McIndoe, J. Scott
Competitive isomerization and catalyst decomposition during ring-closing metathesis
Catalysis Science & Technology, 2023, 13, 4000-4008
1569484 CIFC18 H39 Cu N3 O4 SP 1 21/n 110.2913; 16.4105; 13.1029
90; 92.4886; 90
2210.8Nakano, Akiyuki; Raut, Vivek S.; Asao, Naoki; Ando, Akane; Fujisawa, Kiyoshi; Higashimura, Hideyuki
Enzyme-inspired catalysts with high activity and selectivity for oxidative polymerization of 2-phenylphenol
Catalysis Science & Technology, 2023, 13, 4968-4977
1569485 CIFC18 H10 Cl Cu F6 N3 PP -310.9907; 10.9907; 23.1929
90; 90; 120
2426.3Nakano, Akiyuki; Raut, Vivek S.; Asao, Naoki; Ando, Akane; Fujisawa, Kiyoshi; Higashimura, Hideyuki
Enzyme-inspired catalysts with high activity and selectivity for oxidative polymerization of 2-phenylphenol
Catalysis Science & Technology, 2023, 13, 4968-4977
1569547 CIFC32 H31 F3 N4 O3 Ru SP 1 21/c 118.9076; 11.49805; 14.5081
90; 100.559; 90
3100.66Knörr, Pascal; Lentz, Nicolas; Albrecht, Martin
Efficient additive-free formic acid dehydrogenation with a NNN–ruthenium complex
Catalysis Science & Technology, 2023, 13, 5625-5631
1569548 CIFC32 H34 Cl2 F12 N4 P2 RuP 1 21/c 120.26618; 10.02851; 20.44489
90; 101.764; 90
4067.94Knörr, Pascal; Lentz, Nicolas; Albrecht, Martin
Efficient additive-free formic acid dehydrogenation with a NNN–ruthenium complex
Catalysis Science & Technology, 2023, 13, 5625-5631
1569579 CIFC102 H78 Au Cl3 N2P -19.8807; 19.9006; 20.5724
91.843; 101.967; 101.976
3859.18Rahman, Md. Mahbubur; Gao, Pengcheng; Zhao, Qun; Lalancette, Roger; Szostak, Roman; Szostak, Michal
[Au(Np#)Cl]: highly reactive and broadly applicable Au(i)–NHC catalysts for alkyne π-activation reactions
Catalysis Science & Technology, 2023, 13, 5131-5139
1569584 CIFC38 H51 Cl Ir O6 P2P 1 21/c 18.2561; 40.9906; 12.059
90; 109.088; 90
3856.65Chakrabarti, Kaushik; Spangenberg, Alice; Subramaniyan, Vasudevan; Hederstedt, Andreas; Abdelaziz, Omar Y.; Polukeev, Alexey V.; Wallenberg, Reine; Hulteberg, Christian P.; Wendt, Ola F.
Acceptorless dehydrogenation of 4-methylpiperidine by supported pincer-ligated iridium catalysts in continuous flow
Catalysis Science & Technology, 2023, 13, 5113-5119
1569594 CIFC21 H20 Br2 Cu N2 SP 1 21/c 110.9864; 12.8237; 15.4669
90; 90.946; 90
2178.78Jana, Narayan Ch.; Behera, Sourav; Maharana, Suraj Kumar; Behera, Rakesh R.; Bagh, Bidraha
Selective aerobic oxidation of biomass model compound veratryl alcohol catalyzed by air-stable copper(ii) complexes in water
Catalysis Science & Technology, 2023, 13, 5422-5434
1569595 CIFC16 H15 Br2 Cu N3 OP 1 21/n 111.7434; 13.1713; 12.2852
90; 112.638; 90
1753.8Jana, Narayan Ch.; Behera, Sourav; Maharana, Suraj Kumar; Behera, Rakesh R.; Bagh, Bidraha
Selective aerobic oxidation of biomass model compound veratryl alcohol catalyzed by air-stable copper(ii) complexes in water
Catalysis Science & Technology, 2023, 13, 5422-5434
1569596 CIFC21 H22 Br2 Cu N2 SP 1 21/c 116.8022; 9.4781; 13.723
90; 94.977; 90
2177.19Jana, Narayan Ch.; Behera, Sourav; Maharana, Suraj Kumar; Behera, Rakesh R.; Bagh, Bidraha
Selective aerobic oxidation of biomass model compound veratryl alcohol catalyzed by air-stable copper(ii) complexes in water
Catalysis Science & Technology, 2023, 13, 5422-5434
1569606 CIFC67 H56 Cu F6 N2 O3 P3P 1 2/n 112.8402; 19.2826; 25.7915
90; 101.171; 90
6264.79Doettinger, Florian; Kleeberg, Christian; Queffélec, Clémence; Tschierlei, Stefanie; Pellegrin, Yann; Karnahl, Michael
Rich or poor: the impact of electron donation and withdrawal on the photophysical and photocatalytic properties of copper(i) complexes
Catalysis Science & Technology, 2023, 13, 4092-4106
1569607 CIFC48 H49 Cl4 Cu F6 N2 O P3P -19.7521; 15.5514; 16.6886
94.049; 99.373; 100.684
2440.59Doettinger, Florian; Kleeberg, Christian; Queffélec, Clémence; Tschierlei, Stefanie; Pellegrin, Yann; Karnahl, Michael
Rich or poor: the impact of electron donation and withdrawal on the photophysical and photocatalytic properties of copper(i) complexes
Catalysis Science & Technology, 2023, 13, 4092-4106
1569617 CIFC92 H108 Cu12 Mo10 N5 O116 P V2F 2 326.2487; 26.2487; 26.2487
90; 90; 90
18085.2Lu, Xinlin; Cheng, Ting; Geletii, Yurii V.; Bacsa, John; Hill, Craig L.
Reactivity and stability synergism directed by the electron transfer between polyoxometalates and metal–organic frameworks
Catalysis Science & Technology, 2023, 13, 5094-5103
1569680 CIFC39 H39 N O3 P2 RuP 1 21/n 19.8933; 17.588; 18.9275
90; 91.121; 90
3292.8Alessi, Dario; Del Mestre, Pierfrancesco; Aneggi, Eleonora; Ballico, Maurizio; Beltrami, Antonio P.; Busato, Marta; Cesselli, Daniela; Heidecker, Alexandra A.; Zuccaccia, Daniele; Baratta, Walter
Cyclometalated C^N diphosphine ruthenium catalysts for Oppenauer-type oxidation/transfer hydrogenation reactions and cytotoxic activity
Catalysis Science & Technology, 2023, 13, 5267-5279
1569681 CIFC39 H38 N2 O2 P2 RuP 1 21/n 19.845; 17.644; 19.132
90; 90.757; 90
3323Alessi, Dario; Del Mestre, Pierfrancesco; Aneggi, Eleonora; Ballico, Maurizio; Beltrami, Antonio P.; Busato, Marta; Cesselli, Daniela; Heidecker, Alexandra A.; Zuccaccia, Daniele; Baratta, Walter
Cyclometalated C^N diphosphine ruthenium catalysts for Oppenauer-type oxidation/transfer hydrogenation reactions and cytotoxic activity
Catalysis Science & Technology, 2023, 13, 5267-5279
1569682 CIFC41 H39 N O2 P2 RuP 1 21/n 19.8638; 17.891; 19.013
90; 90.761; 90
3355Alessi, Dario; Del Mestre, Pierfrancesco; Aneggi, Eleonora; Ballico, Maurizio; Beltrami, Antonio P.; Busato, Marta; Cesselli, Daniela; Heidecker, Alexandra A.; Zuccaccia, Daniele; Baratta, Walter
Cyclometalated C^N diphosphine ruthenium catalysts for Oppenauer-type oxidation/transfer hydrogenation reactions and cytotoxic activity
Catalysis Science & Technology, 2023, 13, 5267-5279
1569683 CIFC43 H39 N O2 P2 RuC 1 2/c 129.656; 9.775; 25.141
90; 106.902; 90
6973Alessi, Dario; Del Mestre, Pierfrancesco; Aneggi, Eleonora; Ballico, Maurizio; Beltrami, Antonio P.; Busato, Marta; Cesselli, Daniela; Heidecker, Alexandra A.; Zuccaccia, Daniele; Baratta, Walter
Cyclometalated C^N diphosphine ruthenium catalysts for Oppenauer-type oxidation/transfer hydrogenation reactions and cytotoxic activity
Catalysis Science & Technology, 2023, 13, 5267-5279
1569735 CIFC14 H33 Cl2 Cu N5 O8P 1 21/n 19.7458; 15.2404; 15.8334
90; 91.303; 90
2351.1Yamaguchi, Kohei; Uemura, Yuya; Sugimoto, Hideki; Ito, Rin; Morimoto, Yuma; Itoh, Shinobu
Mechanistic studies on catalytic alkane oxidation by Murahashi's O2/copper(ii)/aldehyde system
Catalysis Science & Technology, 2023, 13, 5859-5867
1569736 CIFC20 H21 Cl2 Cu N5 O8P 1 21 110.2096; 9.5739; 12.8306
90; 106.747; 90
1200.9Yamaguchi, Kohei; Uemura, Yuya; Sugimoto, Hideki; Ito, Rin; Morimoto, Yuma; Itoh, Shinobu
Mechanistic studies on catalytic alkane oxidation by Murahashi's O2/copper(ii)/aldehyde system
Catalysis Science & Technology, 2023, 13, 5859-5867
1569737 CIFC18 H25 Cl2 Cu N5 O8.5C 1 2/c 120.0899; 10.2143; 23.1418
90; 101.316; 90
4656.5Yamaguchi, Kohei; Uemura, Yuya; Sugimoto, Hideki; Ito, Rin; Morimoto, Yuma; Itoh, Shinobu
Mechanistic studies on catalytic alkane oxidation by Murahashi's O2/copper(ii)/aldehyde system
Catalysis Science & Technology, 2023, 13, 5859-5867
1569738 CIFC19 H27 Cl2 Cu N5 O8P 1 21/c 111.4909; 9.9244; 21.336
90; 99.433; 90
2400.3Yamaguchi, Kohei; Uemura, Yuya; Sugimoto, Hideki; Ito, Rin; Morimoto, Yuma; Itoh, Shinobu
Mechanistic studies on catalytic alkane oxidation by Murahashi's O2/copper(ii)/aldehyde system
Catalysis Science & Technology, 2023, 13, 5859-5867
1569739 CIFC71 H91 B2 Cu N11P -112.9525; 13.3361; 20.9485
83.572; 78.793; 66.559
3254.2Yamaguchi, Kohei; Uemura, Yuya; Sugimoto, Hideki; Ito, Rin; Morimoto, Yuma; Itoh, Shinobu
Mechanistic studies on catalytic alkane oxidation by Murahashi's O2/copper(ii)/aldehyde system
Catalysis Science & Technology, 2023, 13, 5859-5867
1569884 CIFC200 H180 Au28P 1 21/n 121.1424; 46.1033; 21.8744
90; 96.53; 90
21183.4Tang, Shisi; Liu, Haoqi; Song, Tongxin; Cai, Xiao; Liu, Xu; Ding, Weiping; Zhu, Yan
Aromatic alkyne-protected Au28 nanoclusters for electrocatalytic ethanol oxidation
Catalysis Science & Technology, 2023, 13, 5821-5824
1569886 CIFC14 H18 O6P -16.158; 10.149; 11.482
76.503; 79.869; 89.31
686.6Conrads, Christian; Burkart, Lisa; Soerensen, Sven; Noichl, Sandra; Kara, Yasemin; Heck, Joshua; Hoffmann, Alexander; Herres-Pawlis, Sonja
Understanding structure–activity relationships: iron(ii) complexes of “Legacy Guanidines” as catalysts for the synthesis of polylactide
Catalysis Science & Technology, 2023, 13, 6006-6021
1569887 CIFC12 H28 Cl2 Fe N6C 1 2/c 118.177; 7.3979; 13.815
90; 102.03; 90
1816.9Conrads, Christian; Burkart, Lisa; Soerensen, Sven; Noichl, Sandra; Kara, Yasemin; Heck, Joshua; Hoffmann, Alexander; Herres-Pawlis, Sonja
Understanding structure–activity relationships: iron(ii) complexes of “Legacy Guanidines” as catalysts for the synthesis of polylactide
Catalysis Science & Technology, 2023, 13, 6006-6021
1569888 CIFC12 H20 Cl2 Fe N4P 21 21 218.7832; 11.895; 15.221
90; 90; 90
1590.2Conrads, Christian; Burkart, Lisa; Soerensen, Sven; Noichl, Sandra; Kara, Yasemin; Heck, Joshua; Hoffmann, Alexander; Herres-Pawlis, Sonja
Understanding structure–activity relationships: iron(ii) complexes of “Legacy Guanidines” as catalysts for the synthesis of polylactide
Catalysis Science & Technology, 2023, 13, 6006-6021
1569889 CIFC13 H30 Cl2 Fe N6P -19.3007; 9.83; 12.49
69.47; 87.94; 65.38
964Conrads, Christian; Burkart, Lisa; Soerensen, Sven; Noichl, Sandra; Kara, Yasemin; Heck, Joshua; Hoffmann, Alexander; Herres-Pawlis, Sonja
Understanding structure–activity relationships: iron(ii) complexes of “Legacy Guanidines” as catalysts for the synthesis of polylactide
Catalysis Science & Technology, 2023, 13, 6006-6021
1569890 CIFC16 H24 Cl2 Fe N6I 1 2/a 117.306; 9.454; 36.444
90; 97.32; 90
5914Conrads, Christian; Burkart, Lisa; Soerensen, Sven; Noichl, Sandra; Kara, Yasemin; Heck, Joshua; Hoffmann, Alexander; Herres-Pawlis, Sonja
Understanding structure–activity relationships: iron(ii) complexes of “Legacy Guanidines” as catalysts for the synthesis of polylactide
Catalysis Science & Technology, 2023, 13, 6006-6021
1569891 CIFC22 H36 Cl2 Fe N8P 21 21 2112.769; 13.649; 15.343
90; 90; 90
2674Conrads, Christian; Burkart, Lisa; Soerensen, Sven; Noichl, Sandra; Kara, Yasemin; Heck, Joshua; Hoffmann, Alexander; Herres-Pawlis, Sonja
Understanding structure–activity relationships: iron(ii) complexes of “Legacy Guanidines” as catalysts for the synthesis of polylactide
Catalysis Science & Technology, 2023, 13, 6006-6021
1569892 CIFC20 H26 Cl2 Fe N6P 1 21/c 115.712; 9.29; 16.52
90; 116.37; 90
2160.4Conrads, Christian; Burkart, Lisa; Soerensen, Sven; Noichl, Sandra; Kara, Yasemin; Heck, Joshua; Hoffmann, Alexander; Herres-Pawlis, Sonja
Understanding structure–activity relationships: iron(ii) complexes of “Legacy Guanidines” as catalysts for the synthesis of polylactide
Catalysis Science & Technology, 2023, 13, 6006-6021
1569893 CIFC16 H28 Cl2 Fe N6P 1 21/c 112.011; 10.508; 16.725
90; 106.09; 90
2028.2Conrads, Christian; Burkart, Lisa; Soerensen, Sven; Noichl, Sandra; Kara, Yasemin; Heck, Joshua; Hoffmann, Alexander; Herres-Pawlis, Sonja
Understanding structure–activity relationships: iron(ii) complexes of “Legacy Guanidines” as catalysts for the synthesis of polylactide
Catalysis Science & Technology, 2023, 13, 6006-6021
1570011 CIFC21 H13 F15 N6 O9 Pd S4I 1 a 114.056499; 14.319201; 17.2059
90; 95.848; 90
3445.14Blair, Matthew N.; Murray-Williams, Meadhbh; Maguire, Calum; Brown, Clare L.; Cao, Qun; Chai, Hongxin; Li, Yitong; O'Hagan, Róisín L.; Dingwall, Paul; Manesiotis, Panagiotis; Lyall, Catherine L.; Lowe, John P.; Hintermair, Ulrich; Knipe, Peter C.; Muldoon, Mark J.
Enhancing the performance for palladium catalysed tert-butyl hydroperoxide-mediated Wacker-type oxidation of alkenes
Catalysis Science & Technology, 2023, 13, 6224-6232
1570094 CIFC47.25 H43.5 Cl2.5 F10 Ir N4 O4P c c n17.915; 22.4618; 25.0531
90; 90; 90
10081.4Tan, Yi Zhen; Wu, Xiangyang; Lu, Yunpeng; Chiba, Shunsuke; Yeow, Edwin K. L.
Towards catalytic redox-active iridium polypyridyl complex by in situ photosubstitution
Catalysis Science & Technology, 2024, 14, 66-75
1570095 CIFC53 H52 F10 Ir N5 O4P b c n25.7551; 19.7204; 22.789
90; 90; 90
11574.6Tan, Yi Zhen; Wu, Xiangyang; Lu, Yunpeng; Chiba, Shunsuke; Yeow, Edwin K. L.
Towards catalytic redox-active iridium polypyridyl complex by in situ photosubstitution
Catalysis Science & Technology, 2024, 14, 66-75
1570285 CIFC61 H53 Cl2 N5 O2 P2 RuP 1 21/c 113.5479; 22.1691; 23.429
90; 131.809; 90
5245Nath, Shambhu; Yadav, Ekta; Raghuvanshi, Abhinav; Singh, Amrendra K.
Mechanistic insights and comparative analysis of Ru(ii)–NNC pincer complexes with anionic-, protic-, and classical-NHCs for transfer hydrogenation of ketones
Catalysis Science & Technology, 2023, 13, 7085-7099
1570363 CIFC10 H11 Br2 Co N3P -17.948; 8.256; 10.775
75.188; 78.772; 73.732
650.4Kumar, Rohit; Srivastava, Ankit Kumar; Nagarasu, Palaniyappan; Madhu, Vedichi; Balaraman, Ekambaram
A general and expedient amination of alcohols catalysed by a single-site (NN)Co(ii)-bidentate complex under solventless conditions
Catalysis Science & Technology, 2024, 14, 98-109
1570378 CIFC36 H40 Cu4 I4 N8P 1 21/c 19.5291; 22.9164; 9.87
90; 102.612; 90
2103.33Jin, Xiaodong; Lin, Yongjie; Davies, Robert P.
On the mechanism of benzimidazole synthesis via copper-catalysed intramolecular N-arylation
Catalysis Science & Technology, 2023, 13, 7181-7189
1570379 CIFC43 H48 Cu4 I4 N8P n n a20.0759; 16.97565; 14.15214
90; 90; 90
4823.07Jin, Xiaodong; Lin, Yongjie; Davies, Robert P.
On the mechanism of benzimidazole synthesis via copper-catalysed intramolecular N-arylation
Catalysis Science & Technology, 2023, 13, 7181-7189
1570380 CIFC36 H40 Cu4 F4 N8P -19.6197; 14.6022; 15.2132
116.031; 98.314; 100.323
1827.89Jin, Xiaodong; Lin, Yongjie; Davies, Robert P.
On the mechanism of benzimidazole synthesis via copper-catalysed intramolecular N-arylation
Catalysis Science & Technology, 2023, 13, 7181-7189
1570381 CIFC18 H20 Br Cu N4P 1 21/c 115.1457; 8.88279; 14.4845
90; 110.461; 90
1825.75Jin, Xiaodong; Lin, Yongjie; Davies, Robert P.
On the mechanism of benzimidazole synthesis via copper-catalysed intramolecular N-arylation
Catalysis Science & Technology, 2023, 13, 7181-7189
1570382 CIFC18 H20 Cl2 Cu2 N4P -110.4396; 13.5659; 14.4025
74.007; 89.553; 79.913
1928.7Jin, Xiaodong; Lin, Yongjie; Davies, Robert P.
On the mechanism of benzimidazole synthesis via copper-catalysed intramolecular N-arylation
Catalysis Science & Technology, 2023, 13, 7181-7189
1570383 CIFC30 H28 Cu2 F2 N6P n m a17.3777; 14.539; 10.7488
90; 90; 90
2715.73Jin, Xiaodong; Lin, Yongjie; Davies, Robert P.
On the mechanism of benzimidazole synthesis via copper-catalysed intramolecular N-arylation
Catalysis Science & Technology, 2023, 13, 7181-7189
1570384 CIFC15 H12 F4 O3 SP -16.95; 9.8071; 11.6221
90.667; 105.074; 107.794
724.72Mathuri, Ashis; Pal, Buddhadeb; Pramanik, Milan; Manna, Anupam; Mal, Prasenjit
Enhancing the photocatalytic efficiency and stability of CsPbBr3 nanocrystals for visible-light driven aerobic diaryl thio/seleno etherification
Catalysis Science & Technology, 2024, 14, 183-189
1570453 CIFC54 H74 N2 O8P 16.10213; 7.30975; 29.70773
92.3183; 93.944; 114.298
1201.43Zhang, Fan; Wang, Su-Jing; Xiao, Wen; Yu, Ming-Zhu; Sha, Feng; Wu, Ruibo; Xiang, Zheng
Harnessing the catalytic plasticity of the ent-kaurene synthase from Bradyrhizobium japonicum to produce the ent-rosane and ent-pimarane scaffolds
Catalysis Science & Technology, 2024, 14, 306-314
1570630 CIFC16 H17 N O2P 21 21 215.23281; 11.33461; 22.611
90; 90; 90
1341.1Obieta, Maria; Urgoitia, Garazi; Herrero, María Teresa; SanMartin, Raul
Efficient iron-catalyzed direct acylation of amines with carboxylic acids and esters under oxygenated conditions
Catalysis Science & Technology, 2024, 14, 478-488
1570631 CIFC17 H19 N O2P 1 21 15.4042; 22.6075; 23.7568
90; 95.144; 90
2890.81Obieta, Maria; Urgoitia, Garazi; Herrero, María Teresa; SanMartin, Raul
Efficient iron-catalyzed direct acylation of amines with carboxylic acids and esters under oxygenated conditions
Catalysis Science & Technology, 2024, 14, 478-488
1570946 CIFC40 H46 N6 O12 ZnC 1 2/c 113.2667; 13.8534; 22.0429
90; 93.349; 90
4044.3Khattak, Zafar A. K.; Ahmad, Nazir; Younus, Hussein A.; Ullah, Habib; Yu, Baoyi; Munawar, Khurram S.; Ashfaq, Muhammad; Yaseen, Muhammad; Danish, Muhammad; Al-Abri, Mohammed; AlHajri, Rashid; Verpoort, Francis
Ambient conversion of CO2 and epoxides to cyclic carbonates using 3D amide-functionalized MOFs
Catalysis Science & Technology, 2024, 14, 1888-1901
1570973 CIFC9 H5 Mn0.5 N4 O5 PbC 1 2/c 126.1891; 7.1383; 14.0543
90; 120.864; 90
2255.3Wang, Xiyu; Yang, Guo-Ping; Wang, Yao-Yu
Catalytic comparison of cyanosilylation/Knoevenagel condensation reactions by Pb-based heterometallic organic frameworks with different second metal ions
Catalysis Science & Technology, 2024, 14, 1613-1621
1570974 CIFC9 H5 N4 O5 Pb Zn0.5C 1 2/c 126.201; 7.1538; 14.084
90; 120.846; 90
2266.4Wang, Xiyu; Yang, Guo-Ping; Wang, Yao-Yu
Catalytic comparison of cyanosilylation/Knoevenagel condensation reactions by Pb-based heterometallic organic frameworks with different second metal ions
Catalysis Science & Technology, 2024, 14, 1613-1621
1570975 CIFC9 H5 Cd0.5 N4 O5 PbC 1 2/c 126.2822; 7.2428; 14.042
90; 120.511; 90
2302.86Wang, Xiyu; Yang, Guo-Ping; Wang, Yao-Yu
Catalytic comparison of cyanosilylation/Knoevenagel condensation reactions by Pb-based heterometallic organic frameworks with different second metal ions
Catalysis Science & Technology, 2024, 14, 1613-1621
1571020 CIFC94 H170 B6 O16P -111.5184; 14.6526; 16.148
97.73; 108.931; 98.573
2500Durin, Gabriel; Romero, R. Martin; Godou, Timothé; Chauvier, Clément; Thuéry, Pierre; Nicolas, Emmanuel; Cantat, Thibault
Formoxyboranes as hydroborane surrogates for the catalytic reduction of carbonyls through transfer hydroboration
Catalysis Science & Technology, 2024, 14, 1848-1853
1571021 CIFC14 H20 B N O2P b c a10.767; 12.8036; 18.9389
90; 90; 90
2610.85Durin, Gabriel; Romero, R. Martin; Godou, Timothé; Chauvier, Clément; Thuéry, Pierre; Nicolas, Emmanuel; Cantat, Thibault
Formoxyboranes as hydroborane surrogates for the catalytic reduction of carbonyls through transfer hydroboration
Catalysis Science & Technology, 2024, 14, 1848-1853
1571022 CIFC16 H25 B N2 O2P 1 21/n 19.8725; 7.3758; 21.882
90; 98.551; 90
1575.68Durin, Gabriel; Romero, R. Martin; Godou, Timothé; Chauvier, Clément; Thuéry, Pierre; Nicolas, Emmanuel; Cantat, Thibault
Formoxyboranes as hydroborane surrogates for the catalytic reduction of carbonyls through transfer hydroboration
Catalysis Science & Technology, 2024, 14, 1848-1853
1571023 CIFC20 H33 B N2 O2P 1 21/c 112.5923; 10.8437; 14.9151
90; 90.37; 90
2036.6Durin, Gabriel; Romero, R. Martin; Godou, Timothé; Chauvier, Clément; Thuéry, Pierre; Nicolas, Emmanuel; Cantat, Thibault
Formoxyboranes as hydroborane surrogates for the catalytic reduction of carbonyls through transfer hydroboration
Catalysis Science & Technology, 2024, 14, 1848-1853
1571024 CIFC18 H28 B N O2P 1 21/c 110.1407; 28.0242; 12.2214
90; 94.627; 90
3461.8Durin, Gabriel; Romero, R. Martin; Godou, Timothé; Chauvier, Clément; Thuéry, Pierre; Nicolas, Emmanuel; Cantat, Thibault
Formoxyboranes as hydroborane surrogates for the catalytic reduction of carbonyls through transfer hydroboration
Catalysis Science & Technology, 2024, 14, 1848-1853
1571217 CIFC18 H16 F3 N O5P 1 21/n 14.3844; 16.88; 23.4788
90; 91.0715; 90
1737.33Wang, Yu; Li, Yiwen; Ni, Yeke; Bučar, Dejan-Krešimir; Dalby, Paul A.; Ward, John M.; Jeffries, Jack W. E.; Hailes, Helen C.
A transaminase-mediated aldol reaction and applications in cascades to styryl pyridines.
Catalysis science & technology, 2024, 14, 2390-2399
1571255 CIFC20 H18 Br N3 O2P 1 21/c 113.4985; 16.3402; 8.5914
90; 99.883; 90
1866.87Vijayakumar, Monica; Yhobu, Zhoveta; Małecki, Jan Grzegorz; Nagaraju, Dodahhali H.; Keri, Rangappa S.; Budagumpi, Srinivasa
Comprehensive enhancement in electrocatalytic oxygen evolution performance of nickel and cobalt complexes derived from π-conjugated N-heterocyclic carbene ligands through carbon composite strategy
Catalysis Science & Technology, 2024, 14, 2489-2502
1571256 CIFC20 H18 Br N3 O2P 1 21/c 110.7857; 14.519; 11.7467
90; 103.727; 90
1787Vijayakumar, Monica; Yhobu, Zhoveta; Małecki, Jan Grzegorz; Nagaraju, Dodahhali H.; Keri, Rangappa S.; Budagumpi, Srinivasa
Comprehensive enhancement in electrocatalytic oxygen evolution performance of nickel and cobalt complexes derived from π-conjugated N-heterocyclic carbene ligands through carbon composite strategy
Catalysis Science & Technology, 2024, 14, 2489-2502
1571407 CIFC18 H19 N OP 1 21 110.6039; 8.8338; 15.3191
90; 92.902; 90
1433.14Chen, Long; Qu, Ge; Cai, Zhiqiang; Yuan, Bo; Sun, Zhoutong
Synthesis of a sacubitril precursor via the construction of one-pot chemoenzymatic cascades
Catalysis Science & Technology, 2024, 14, 2817-2824
1571418 CIFC48 H38 Mg N4 OP 1 21/c 117.6518; 9.34996; 24.7713
90; 105.336; 90
3942.77Meher, Sushanta Kumar; Nayak, Prakash; Dhala, Sasmita; Tripathy, Swetapadma; Venkatasubbaiah, Krishnan
Magnesium-porphyrin as an efficient photocatalyst for the transformation of CO2 to cyclic carbonates and oxazolidinones under ambient conditions
Catalysis Science & Technology, 2024, 14, 3125-3130
1571676 CIFC60 H90 Cr N4 O8 Si2P -111.3465; 12.5357; 13.0549
109.944; 101.745; 105.832
1586.41Kakiuchi, Yuya; Shapovalova, Svetlana; Protsenko, Bogdan; Guda, Sergey; Safonova, Olga V.; Guda, Alexander; Copéret, Christophe
Influence of strong π-acceptor ligands on Cr-K-edge X-ray absorption spectral signatures and consequences for the interpretation of surface sites in the Phillips catalyst.
Catalysis science & technology, 2024, 14, 3682-3690
1571677 CIFC46 H60 Cr N2 O2P 1 21/c 110.928; 28.6868; 14.0779
90; 110.037; 90
4146.1Kakiuchi, Yuya; Shapovalova, Svetlana; Protsenko, Bogdan; Guda, Sergey; Safonova, Olga V.; Guda, Alexander; Copéret, Christophe
Influence of strong π-acceptor ligands on Cr-K-edge X-ray absorption spectral signatures and consequences for the interpretation of surface sites in the Phillips catalyst.
Catalysis science & technology, 2024, 14, 3682-3690
1571678 CIFC54 H99 Cr N2 O12 Si3P 21 21 2113.1907; 20.8362; 23.4449
90; 90; 90
6443.7Kakiuchi, Yuya; Shapovalova, Svetlana; Protsenko, Bogdan; Guda, Sergey; Safonova, Olga V.; Guda, Alexander; Copéret, Christophe
Influence of strong π-acceptor ligands on Cr-K-edge X-ray absorption spectral signatures and consequences for the interpretation of surface sites in the Phillips catalyst.
Catalysis science & technology, 2024, 14, 3682-3690
1571723 CIFC42 H32 F6 Fe Ir N4 PP 1 21/c 116.7116; 14.0718; 15.4454
90; 96.098; 90
3611.62Gayen, Firdaus Rahaman; Chawla, Sakshi; Bora, Debashree; Borkotoky, Lodsna; Gazi, Sarifuddin; Mallick, Dibyendu; Maurya, Ram Awatar; De, Arijit Kumar; Saha, Biswajit
Boosting photocatalytic efficiency of iridium polypyridyl complex in coupling reaction through the induction of ferrocene: insights into bimetallic catalysis
Catalysis Science & Technology, 2024, 14, 3618-3628
1571727 CIFC16 H23 Co I2 N2P -19.2861; 15.141; 15.1451
118.4; 95.188; 95.18
1843.74Trotta, Caterina; Dahiya, Pardeep; Baldinelli, Lorenzo; Menendez Rodriguez, Gabriel; Chakraborty, Priyanka; Bistoni, Giovanni; De Angelis, Filippo; Sundararaju, Basker; Macchioni, Alceo
A cobalt molecular catalyst for hydrogen evolution reaction with remarkable activity in phosphate buffered water solution
Catalysis Science & Technology, 2024, 14, 3699-3706
1571728 CIFC17 H25 Co I2 N2P -18.202; 9.8816; 12.3164
89.106; 83.431; 76.17
962.86Trotta, Caterina; Dahiya, Pardeep; Baldinelli, Lorenzo; Menendez Rodriguez, Gabriel; Chakraborty, Priyanka; Bistoni, Giovanni; De Angelis, Filippo; Sundararaju, Basker; Macchioni, Alceo
A cobalt molecular catalyst for hydrogen evolution reaction with remarkable activity in phosphate buffered water solution
Catalysis Science & Technology, 2024, 14, 3699-3706
1571885 CIFC98 H123 Co2 N4 O10P 111.4614; 12.9693; 15.9143
101.429; 106.498; 92.924
2208.7Pandey, Sachchida Nand; Sengupta, Arunava; Bera, Rajib; Ali, Sohel; Yadav, Somnath
A sugar-derived ligand for room temperature aerial oxidation or non-aqueous Markovnikov hydration of styrenes using a preformed or in situ generated Co complex
Catalysis Science & Technology, 2024, 14, 4487-4495
1572058 CIFC14 H19 Br Cl6 N2 Pd SnP -19.03; 10.515; 14.25
103.95; 106.54; 97.14
1231Nayak, Mukesh Kumar; Maharana, Rajat Rajiv; Mohanty, Anuradha; Samanta, Kousik; Roy, Sujit
Effect of N-heterocyclic carbene in palladium–tin heterobimetallic catalysis: a DFT supported study on the C3–H functionalization of unprotected indoles
Catalysis Science & Technology, 2024, 14, 4674-4683
1572060 CIFC27 H30 N2 OP 1 21/c 119.5712; 5.9154; 20.8266
90; 115.442; 90
2177.3Körner, Lukas; Bockfeld, Dirk; Bannenberg, Thomas; Tamm, Matthias
2,3-Diamino-4,5-diarylcyclopentadienone iron carbonyl complexes as catalysts for reductive amination reactions
Catalysis Science & Technology, 2024, 14, 4522-4532
1572061 CIFC30 H30 Fe N2 O4P 1 21/n 19.5244; 27.728; 10.4699
90; 114.029; 90
2525.4Körner, Lukas; Bockfeld, Dirk; Bannenberg, Thomas; Tamm, Matthias
2,3-Diamino-4,5-diarylcyclopentadienone iron carbonyl complexes as catalysts for reductive amination reactions
Catalysis Science & Technology, 2024, 14, 4522-4532
1572062 CIFC41.71 H50.77 Fe N3 O3P 1 21/n 111.1925; 28.2554; 12.9763
90; 113.551; 90
3761.9Körner, Lukas; Bockfeld, Dirk; Bannenberg, Thomas; Tamm, Matthias
2,3-Diamino-4,5-diarylcyclopentadienone iron carbonyl complexes as catalysts for reductive amination reactions
Catalysis Science & Technology, 2024, 14, 4522-4532
1572063 CIFC38 H40 F6 Fe N2 O4P -110.59054; 15.4277; 23.2167
101.099; 99.234; 103.291
3538.47Körner, Lukas; Bockfeld, Dirk; Bannenberg, Thomas; Tamm, Matthias
2,3-Diamino-4,5-diarylcyclopentadienone iron carbonyl complexes as catalysts for reductive amination reactions
Catalysis Science & Technology, 2024, 14, 4522-4532
1572064 CIFC34 H32.5 F6 Fe N3.5 O3P -110.7552; 11.5325; 14.6781
106.515; 110.781; 94.22
1600.72Körner, Lukas; Bockfeld, Dirk; Bannenberg, Thomas; Tamm, Matthias
2,3-Diamino-4,5-diarylcyclopentadienone iron carbonyl complexes as catalysts for reductive amination reactions
Catalysis Science & Technology, 2024, 14, 4522-4532
1572065 CIFC29 H28 F6 N2 OP b c a18.6211; 16.9942; 32.0027
90; 90; 90
10127.3Körner, Lukas; Bockfeld, Dirk; Bannenberg, Thomas; Tamm, Matthias
2,3-Diamino-4,5-diarylcyclopentadienone iron carbonyl complexes as catalysts for reductive amination reactions
Catalysis Science & Technology, 2024, 14, 4522-4532
1572066 CIFC39 H47 Cl3 Fe N2 O4P -112.3708; 12.4378; 13.3652
99.388; 97.45; 109.19
1878.73Körner, Lukas; Bockfeld, Dirk; Bannenberg, Thomas; Tamm, Matthias
2,3-Diamino-4,5-diarylcyclopentadienone iron carbonyl complexes as catalysts for reductive amination reactions
Catalysis Science & Technology, 2024, 14, 4522-4532
1572067 CIFC42 H56 Fe N3 O3P -111.1854; 12.6987; 14.8312
86.447; 71.724; 71.449
1894.75Körner, Lukas; Bockfeld, Dirk; Bannenberg, Thomas; Tamm, Matthias
2,3-Diamino-4,5-diarylcyclopentadienone iron carbonyl complexes as catalysts for reductive amination reactions
Catalysis Science & Technology, 2024, 14, 4522-4532
1572068 CIFC34 H38 Fe N2 O4P -19.9427; 10.8687; 16.2473
105.165; 92.602; 114.222
1521.98Körner, Lukas; Bockfeld, Dirk; Bannenberg, Thomas; Tamm, Matthias
2,3-Diamino-4,5-diarylcyclopentadienone iron carbonyl complexes as catalysts for reductive amination reactions
Catalysis Science & Technology, 2024, 14, 4522-4532
1572069 CIFC34.5 H37 Fe N3 O3P 1 21/c 111.389; 28.6159; 10.6867
90; 117.667; 90
3084.6Körner, Lukas; Bockfeld, Dirk; Bannenberg, Thomas; Tamm, Matthias
2,3-Diamino-4,5-diarylcyclopentadienone iron carbonyl complexes as catalysts for reductive amination reactions
Catalysis Science & Technology, 2024, 14, 4522-4532
1572070 CIFC25 H23 Fe N3 O3P 1 21/n 17.1127; 14.31; 21.7165
90; 98.189; 90
2187.83Körner, Lukas; Bockfeld, Dirk; Bannenberg, Thomas; Tamm, Matthias
2,3-Diamino-4,5-diarylcyclopentadienone iron carbonyl complexes as catalysts for reductive amination reactions
Catalysis Science & Technology, 2024, 14, 4522-4532
1572204 CIFC44 H49 Br2 Cl2 N3 NiP 19.529; 9.7708; 13.6707
93.325; 107.464; 114.272
1082.49Norouzinyanlakvan, Somayeh; Ovens, Jeffrey; Richeson, Darrin
Electrocatalytic reduction of nitrite to ammonium ion using Ni(ii) complexes with redox-active di(imino)pyridine ligands
Catalysis Science & Technology, 2024, 14, 5422-5429
1572223 CIFC30 H25 N O2 SP 1 21/n 19.7333; 15.2824; 16.1184
90; 91.158; 90
2397.09Chikunova, Elena I.; Kotikova, Polina F.; Dar'in, Dmitry V.; Kukushkin, Vadim Yu.; Dubovtsev, Alexey Yu.
Coinage (Au, Ag, Cu) metal-catalyzed (3 + 2) annulation of α-aminoketones and electron-deficient alkynes as a route to 3-EWG-substituted pyrroles
Catalysis Science & Technology, 2024, 14, 5671-5677
1572224 CIFC49 H40 N2 O4 SP 21 21 219.2439; 14.8214; 28.8605
90; 90; 90
3954.11Chikunova, Elena I.; Kotikova, Polina F.; Dar'in, Dmitry V.; Kukushkin, Vadim Yu.; Dubovtsev, Alexey Yu.
Coinage (Au, Ag, Cu) metal-catalyzed (3 + 2) annulation of α-aminoketones and electron-deficient alkynes as a route to 3-EWG-substituted pyrroles
Catalysis Science & Technology, 2024, 14, 5671-5677
1572225 CIFC24 H18 O6I 1 2/c 113.71; 8.846; 16.24
90; 93.51; 90
1966Biswas, Subir; Barman, Dipankar; Dutta, Priyanka; Gour, Nand K.; Lee, Seonghwan; Kim, Donguk; Park, Young-Bin; Bora, Tonmoy J.; Devi, Arpita; Khanam, Salma A.; Saikia, Lakshi; Karunakar, Galla V.; Zaki, Magdi E. A.; Bania, Kusum K.
Ru-nanoparticles supported on zeolite-Y for ortho-benzylation of phenols and activation of H2O2 for selective synthesis of BINOLs
Catalysis Science & Technology, 2024, 14, 5234-5256
1572236 CIFC22 H25 Fe NP 1 21 110.888; 7.319; 11.07
90; 91.77; 90
881.74Cao, Xu-You; Xu, Shi-Yin; Wu, Ling-Wei; Qiu, Yi-Feng; Zhang, Hao; Si, Li-Ping; Wang, Li-Ming; Liu, Hai-Yang
Co(iii) corroles with pendant amidophenol and amidopyridine as proton-relay arms to facilitate the electrocatalytic hydrogen evolution reaction
Catalysis Science & Technology, 2024, 14, 5608-5615
1572237 CIFC65 H36 Co F10 N4 O2 PP 1 21/c 18.8638; 27.6166; 22.2046
90; 93.367; 90
5426Cao, Xu-You; Xu, Shi-Yin; Wu, Ling-Wei; Qiu, Yi-Feng; Zhang, Hao; Si, Li-Ping; Wang, Li-Ming; Liu, Hai-Yang
Co(iii) corroles with pendant amidophenol and amidopyridine as proton-relay arms to facilitate the electrocatalytic hydrogen evolution reaction
Catalysis Science & Technology, 2024, 14, 5608-5615
1572249 CIFC32 H47 Cu N O3 P3P 1 21/n 112.7674; 17.7058; 15.0682
90; 105.218; 90
3286.8Arévalo, Alma; Juárez-Francisco, Enrique; Roa, Diego A.; Flores-Alamo, Marcos; García, Juventino J.
New mononuclear Cu(i) compounds: synthesis, characterization, and application to the electroreduction of CO2
Catalysis Science & Technology, 2024, 14, 5394-5404
1572250 CIFC28 H39 Cu N O3 P3P 21 21 2110.4119; 15.363; 18.5644
90; 90; 90
2969.5Arévalo, Alma; Juárez-Francisco, Enrique; Roa, Diego A.; Flores-Alamo, Marcos; García, Juventino J.
New mononuclear Cu(i) compounds: synthesis, characterization, and application to the electroreduction of CO2
Catalysis Science & Technology, 2024, 14, 5394-5404
1572251 CIFC22 H36 Cu Fe N O3 P2P -18.6246; 9.3841; 17.1248
91.601; 97.997; 100.216
1348.77Arévalo, Alma; Juárez-Francisco, Enrique; Roa, Diego A.; Flores-Alamo, Marcos; García, Juventino J.
New mononuclear Cu(i) compounds: synthesis, characterization, and application to the electroreduction of CO2
Catalysis Science & Technology, 2024, 14, 5394-5404
1572544 CIFC28 H26 N2 O2 SP 1 21/n 118.3937; 9.9807; 26.3497
90; 104.753; 90
4677.9Kumar, Manish; Singh, Bharat; Singh, Sugandha; Verma, Indresh; Kar, Kamal K.; Ghorai, Manas K.
A Metal-free Route to Substituted Imidazolidines via Ring-Opening Cyclization (ROC) of Activated Aziridines with N-Benzylanilines: DA-COP Catalyzed Photo-Oxidative C-H activation
Catalysis Science & Technology, 2024
1572582 CIFC20 H26 F18 Fe N14 P3P 1 21/c 19.2748; 17.666; 11.4201
90; 104.193; 90
1814.05Zámbó, Greta Gundis; Esslinger, Carla Astrid Astrid; Sauer, Michael Johannes; Rüter, Isabelle; Reich, Robert M.; Demeshko, Serhiy; Meyer, Franc; Kühn, Fritz Elmar
Exploring the impact of abnormal coordination in macrocyclic N-heterocyclic carbene ligands on bio-inspired iron epoxidation catalysis
Catalysis Science & Technology, 2024
1572610 CIFC24 H126 Cl12 N8 O57 Zr6I 2 2 218.7285; 15.0456; 16.9428
90; 90; 90
4774.17García, Andrea; Aguilar-Galindo, Fernando; Castillo, Oscar; Amo-Ochoa, Pilar
1D Zn(II)/2D Cu(I) halogen pyridyl coordination polymers. Band gap engineering by DFT for predicting more efficient photocatalysts in water treatment.
Catalysis Science & Technology, 2024
1572611 CIFC40 H118 Cl12 N8 O37 Zr6P 112.0405; 12.6719; 15.9325
98.769; 99.955; 108.458
2214.6García, Andrea; Aguilar-Galindo, Fernando; Castillo, Oscar; Amo-Ochoa, Pilar
1D Zn(II)/2D Cu(I) halogen pyridyl coordination polymers. Band gap engineering by DFT for predicting more efficient photocatalysts in water treatment.
Catalysis Science & Technology, 2024
1572612 CIFC72 H141 Cl12 N8 O48.5 Zr6I 2 326.0034; 26.0034; 26.0034
90; 90; 90
17582.9García, Andrea; Aguilar-Galindo, Fernando; Castillo, Oscar; Amo-Ochoa, Pilar
1D Zn(II)/2D Cu(I) halogen pyridyl coordination polymers. Band gap engineering by DFT for predicting more efficient photocatalysts in water treatment.
Catalysis Science & Technology, 2024
1572613 CIFC88 H186 Cl12 N16 O67 Zr6P 118.5786; 20.219; 21.8305
102.24; 93.269; 111.66
7365.1García, Andrea; Aguilar-Galindo, Fernando; Castillo, Oscar; Amo-Ochoa, Pilar
1D Zn(II)/2D Cu(I) halogen pyridyl coordination polymers. Band gap engineering by DFT for predicting more efficient photocatalysts in water treatment.
Catalysis Science & Technology, 2024
1572614 CIFC72 H158 Cl12 N8 O65 Zr6P 21 21 228.1804; 26.0321; 17.6857
90; 90; 90
12974.1García, Andrea; Aguilar-Galindo, Fernando; Castillo, Oscar; Amo-Ochoa, Pilar
1D Zn(II)/2D Cu(I) halogen pyridyl coordination polymers. Band gap engineering by DFT for predicting more efficient photocatalysts in water treatment.
Catalysis Science & Technology, 2024
1572694 CIFC46 H62 Cu4 N14 O22P -16.9906; 13.5843; 16.4969
111.425; 91.674; 104.299
1400.71Chang Liao, Nien-Chi; Basha, Sidick R.; Shih, Bo-Hao; Liu, Chia-Chun; Wang, Miao-Han; Lin, Po-Heng; Lee, Chin-Fa
Copper Cluster Complex Catalyzed C-S bond Formation
Catalysis Science & Technology, 2024
1572695 CIFC80 H88 Cu8 N24 O36C 1 2/c 123.249; 24.663; 19.015
90; 114.638; 90
9910Chang Liao, Nien-Chi; Basha, Sidick R.; Shih, Bo-Hao; Liu, Chia-Chun; Wang, Miao-Han; Lin, Po-Heng; Lee, Chin-Fa
Copper Cluster Complex Catalyzed C-S bond Formation
Catalysis Science & Technology, 2024
1572696 CIFC64 H58 Cu4 N8 O14I 1 2/a 124.8301; 11.1779; 25.5838
90; 117.139; 90
6319Chang Liao, Nien-Chi; Basha, Sidick R.; Shih, Bo-Hao; Liu, Chia-Chun; Wang, Miao-Han; Lin, Po-Heng; Lee, Chin-Fa
Copper Cluster Complex Catalyzed C-S bond Formation
Catalysis Science & Technology, 2024
1572997 CIFC26 H22 N5 PP 1 21/n 19.7622; 11.3546; 20.4691
90; 90.507; 90
2268.83Mohite, Manali A.; Sheokand, Sonu; Balakrishna, Maravanji S.
Nickel–PNN catalysed sustainable synthesis of polysubstituted quinolines under microwave irradiation
Catalysis Science & Technology, 2024, 14, 5959-5969
1572998 CIFC27 H22 Cl F3 N5 Ni O3 P SP -18.5305; 9.4375; 17.6861
90.703; 98.984; 99.254
1387.06Mohite, Manali A.; Sheokand, Sonu; Balakrishna, Maravanji S.
Nickel–PNN catalysed sustainable synthesis of polysubstituted quinolines under microwave irradiation
Catalysis Science & Technology, 2024, 14, 5959-5969
1572999 CIFC25 H19 Cl N5 Ni PI 1 2/a 121.2519; 10.0002; 24.7491
90; 114.089; 90
4801.7Mohite, Manali A.; Sheokand, Sonu; Balakrishna, Maravanji S.
Nickel–PNN catalysed sustainable synthesis of polysubstituted quinolines under microwave irradiation
Catalysis Science & Technology, 2024, 14, 5959-5969
1573000 CIFC22 H28 Cl F3 N5 Ni O3 P SP n a 2117.3501; 10.6515; 14.9182
90; 90; 90
2757Mohite, Manali A.; Sheokand, Sonu; Balakrishna, Maravanji S.
Nickel–PNN catalysed sustainable synthesis of polysubstituted quinolines under microwave irradiation
Catalysis Science & Technology, 2024, 14, 5959-5969
1573001 CIFC48 H62 Cl2 N10 Ni2 O P2P -17.8912; 8.8336; 18.4362
85.707; 85.978; 74.077
1230.7Mohite, Manali A.; Sheokand, Sonu; Balakrishna, Maravanji S.
Nickel–PNN catalysed sustainable synthesis of polysubstituted quinolines under microwave irradiation
Catalysis Science & Technology, 2024, 14, 5959-5969
1573002 CIFC52 H40 Cl2 F6 N10 Ni2 O6 P2 S2R -3 :H42.93; 42.93; 16.9889
90; 90; 120
27116Mohite, Manali A.; Sheokand, Sonu; Balakrishna, Maravanji S.
Nickel–PNN catalysed sustainable synthesis of polysubstituted quinolines under microwave irradiation
Catalysis Science & Technology, 2024, 14, 5959-5969
1573093 CIFC29 H24 Ag Cl N2C 1 2/c 113.0868; 15.0378; 12.4442
90; 91.317; 90
2448.3Kardela, Marlena; Dziuk, Błażej; Szostak, Roman; Szostak, Michal; Bisz, Elwira
IBzH (IBenzhydryl): Sterically-Flexible N-Aliphatic N-Heterocyclic Carbenes (NHC) for Iron-Catalyzed C(sp3)–C(sp2) Cross-Coupling of Unactivated Haloalkanes
Catalysis Science & Technology, 2024
1573094 CIFC29 H24 N2 SeP 1 21/n 18.3091; 25.5056; 11.3577
90; 107.935; 90
2290.06Kardela, Marlena; Dziuk, Błażej; Szostak, Roman; Szostak, Michal; Bisz, Elwira
IBzH (IBenzhydryl): Sterically-Flexible N-Aliphatic N-Heterocyclic Carbenes (NHC) for Iron-Catalyzed C(sp3)–C(sp2) Cross-Coupling of Unactivated Haloalkanes
Catalysis Science & Technology, 2024

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