Crystallography Open Database

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1556372 CIFC48 H44 Cu2 O12P -110.53; 10.579; 10.773
109.248; 93.156; 106.287
1073Sunil, Abraham C.; Langner, Ernst H. G.; Marais, Charlene; Bezuidenhoudt, Barend C. B.
Thermo-analytical determination of intermediates in the copper catalysed rearrangement of o-toluic acid to meta-cresol
Catalysis Science & Technology, 2013, 3, 2227
1556373 CIFC19 H24 Br2 Cl2 N4 NiC 2 2 2114.2034; 11.5066; 14.6836
90; 90; 90
2399.8Budhai, Asheena; Omondi, Bernard; Ojwach, Stephen O.; Obuah, Collins; Osei-Twum, Emmanuel Y.; Darkwa, James
Tandem ethylene oligomerisation and Friedel‒Crafts alkylation of toluene catalysed by bis-(3,5-dimethylpyrazol-1-ylmethyl)benzene nickel(ii) complexes and ethylaluminium dichloride
Catalysis Science & Technology, 2013, 3, 3130
1556374 CIFC18 H22 Cl2 N4 NiP -19.2765; 10.7428; 12.1287
110.976; 96.346; 113.712
986.47Budhai, Asheena; Omondi, Bernard; Ojwach, Stephen O.; Obuah, Collins; Osei-Twum, Emmanuel Y.; Darkwa, James
Tandem ethylene oligomerisation and Friedel‒Crafts alkylation of toluene catalysed by bis-(3,5-dimethylpyrazol-1-ylmethyl)benzene nickel(ii) complexes and ethylaluminium dichloride
Catalysis Science & Technology, 2013, 3, 3130
1556375 CIFC18 H22 Br2 N4 NiP -19.3446; 14.994; 15.681
75.599; 78.411; 81.522
2073.7Budhai, Asheena; Omondi, Bernard; Ojwach, Stephen O.; Obuah, Collins; Osei-Twum, Emmanuel Y.; Darkwa, James
Tandem ethylene oligomerisation and Friedel‒Crafts alkylation of toluene catalysed by bis-(3,5-dimethylpyrazol-1-ylmethyl)benzene nickel(ii) complexes and ethylaluminium dichloride
Catalysis Science & Technology, 2013, 3, 3130
1556376 CIFC45 H41 Br2 Cl N2 NiP 1 21/c 19.6013; 16.927; 24.799
90; 100.77; 90
3959.4Jia, Dedong; Zhang, Wenjuan; Liu, Weiliang; Wang, Lin; Redshaw, Carl; Sun, Wen-Hua
Unsymmetrical α-diiminonickel bromide complexes: synthesis, characterization and their catalytic behavior toward ethylene
Catalysis Science & Technology, 2013, 3, 2737
1556377 CIFC47 H45 Br2 Cl N2 NiP 1 21/c 19.922; 16.84; 24.975
90; 98.41; 90
4128.1Jia, Dedong; Zhang, Wenjuan; Liu, Weiliang; Wang, Lin; Redshaw, Carl; Sun, Wen-Hua
Unsymmetrical α-diiminonickel bromide complexes: synthesis, characterization and their catalytic behavior toward ethylene
Catalysis Science & Technology, 2013, 3, 2737
1556378 CIFC25 H35 N3 ZnP -19.6343; 9.6463; 14.2834
76.36; 88.829; 63.062
1144.29Dai, Zhongran; Zhang, Jinjin; Gao, Yuan; Tang, Ning; Huang, Yong; Wu, Jincai
Synthesis and structures of tridentate β-diketiminato zinc phenoxides as catalysts for immortal ring-opening polymerization of l-lactide
Catalysis Science & Technology, 2013, 3, 3268
1556379 CIFC31 H39 N3 O ZnP 1 21/n 112.765; 16.025; 13.594
90; 98.6; 90
2750Dai, Zhongran; Zhang, Jinjin; Gao, Yuan; Tang, Ning; Huang, Yong; Wu, Jincai
Synthesis and structures of tridentate β-diketiminato zinc phenoxides as catalysts for immortal ring-opening polymerization of l-lactide
Catalysis Science & Technology, 2013, 3, 3268
1556380 CIFC35 H47 N3 O ZnP -110.889; 14.2911; 20.7227
92.804; 92.129; 92.212
3216.1Dai, Zhongran; Zhang, Jinjin; Gao, Yuan; Tang, Ning; Huang, Yong; Wu, Jincai
Synthesis and structures of tridentate β-diketiminato zinc phenoxides as catalysts for immortal ring-opening polymerization of l-lactide
Catalysis Science & Technology, 2013, 3, 3268
1556381 CIFC3 H5 Au Cl4 N2P 1 2/m 13.8864; 7.7824; 7.5103
90; 98.573; 90
224.61de Almeida, M. Peixoto; Martins, L. M. D. R. S.; Carabineiro, S. A. C.; Lauterbach, T.; Rominger, F.; Hashmi, A. S. K.; Pombeiro, A. J. L.; Figueiredo, J. L.
Homogeneous and heterogenised new gold C-scorpionate complexes as catalysts for cyclohexane oxidation
Catalysis Science & Technology, 2013, 3, 3056
1556382 CIFC14 H16 N2 O2P 1 21/n 15.8113; 23.7797; 9.2207
90; 95.959; 90
1267.33Ray, Suman; Bhaumik, Asim; Dutta, Arghya; Mukhopadhyay, Chhanda
Porous silica nanoparticles with mesoscopic void spaces for the domino intermolecular aerobic oxidative synthesis of novel β,β′-diketoenamines
Catalysis Science & Technology, 2013, 3, 1267
1556383 CIFC99 H102 N9 O6 P Zn3P -3 c 120.8644; 20.8644; 52.9489
90; 90; 120
19961.8Jacobs, Ivo; van Duin, Adri C. T.; Kleij, Arjan W.; Kuil, Mark; Tooke, Duncan M.; Spek, Anthony L.; Reek, Joost N. H.
Conformational studies of ligand-template assemblies and the consequences for encapsulation of rhodium complexes and hydroformylation catalysis
Catalysis Science & Technology, 2013, 3, 1955
1556384 CIFC25.63 H25.25 Cl3.25 Fe N6 O8P 1 21/c 112.2117; 20.6062; 23.4209
90; 90.957; 90
5892.7Wong, Emma; Jeck, Jonathan; Grau, Michaela; White, Andrew J. P.; Britovsek, George J. P.
A strong-field pentadentate ligand in iron-based alkane oxidation catalysis and implications for iron(iv) oxo intermediates
Catalysis Science & Technology, 2013, 3, 1116
1556385 CIFC48 H47 Cl4 Fe2 N11 O18P 1 21/c 112.4043; 38.877; 12.3737
90; 117.208; 90
5306.9Wong, Emma; Jeck, Jonathan; Grau, Michaela; White, Andrew J. P.; Britovsek, George J. P.
A strong-field pentadentate ligand in iron-based alkane oxidation catalysis and implications for iron(iv) oxo intermediates
Catalysis Science & Technology, 2013, 3, 1116
1556599 CIFC87.5 H82 Ag2 Fe O7.5 P4P 1 21 113.2313; 30.795; 18.556
90; 94.183; 90
7540.6Liu, Kuan-Guan; Rouhani, Farzaneh; Gao, Xue-Mei; Abbasi-Azad, Mahsa; Li, Jing-Zhe; Hu, Xiu-De; Wang, Wei; Hu, Mao-Lin; Morsali, Ali
Bilateral photocatalytic mechanism of dye degradation by a designed ferrocene-functionalized cluster under natural sunlight
Catalysis Science & Technology, 2020, 10, 757-767
1556600 CIFC122.5 H108.5 Cu2 Fe O7 P6P b c a24.582; 20.281; 40.461
90; 90; 90
20172Liu, Kuan-Guan; Rouhani, Farzaneh; Gao, Xue-Mei; Abbasi-Azad, Mahsa; Li, Jing-Zhe; Hu, Xiu-De; Wang, Wei; Hu, Mao-Lin; Morsali, Ali
Bilateral photocatalytic mechanism of dye degradation by a designed ferrocene-functionalized cluster under natural sunlight
Catalysis Science & Technology, 2020, 10, 757-767
1556927 CIFC9 H19 I2 N3 PdC 1 2/c 114.7908; 7.8079; 27.592
90; 99.197; 90
3145.5Khazipov, Oleg V.; Shevchenko, Maxim A.; Pasyukov, Dmitry V.; Chernenko, Andrey Yu.; Astakhov, Alexander V.; Tafeenko, Victor A.; Chernyshev, Victor M.; Ananikov, Valentine P.
Preventing Pd‒NHC bond cleavage and switching from nano-scale to molecular catalytic systems: amines and temperature as catalyst activators
Catalysis Science & Technology, 2020, 10, 1228-1247
1556928 CIFC13 H21 I2 N3 PdP 1 21/c 117.5721; 12.5994; 8.4655
90; 99.55; 90
1848.27Khazipov, Oleg V.; Shevchenko, Maxim A.; Pasyukov, Dmitry V.; Chernenko, Andrey Yu.; Astakhov, Alexander V.; Tafeenko, Victor A.; Chernyshev, Victor M.; Ananikov, Valentine P.
Preventing Pd‒NHC bond cleavage and switching from nano-scale to molecular catalytic systems: amines and temperature as catalyst activators
Catalysis Science & Technology, 2020, 10, 1228-1247
1556929 CIFC15 H17 I2 N3 PdC 1 2/c 121.6545; 8.657; 20.1671
90; 95.408; 90
3763.8Khazipov, Oleg V.; Shevchenko, Maxim A.; Pasyukov, Dmitry V.; Chernenko, Andrey Yu.; Astakhov, Alexander V.; Tafeenko, Victor A.; Chernyshev, Victor M.; Ananikov, Valentine P.
Preventing Pd‒NHC bond cleavage and switching from nano-scale to molecular catalytic systems: amines and temperature as catalyst activators
Catalysis Science & Technology, 2020, 10, 1228-1247
1556930 CIFC16 H19 I2 N3 PdP -19.5333; 10.964; 11.3716
62.48; 79.571; 67.896
976.59Khazipov, Oleg V.; Shevchenko, Maxim A.; Pasyukov, Dmitry V.; Chernenko, Andrey Yu.; Astakhov, Alexander V.; Tafeenko, Victor A.; Chernyshev, Victor M.; Ananikov, Valentine P.
Preventing Pd‒NHC bond cleavage and switching from nano-scale to molecular catalytic systems: amines and temperature as catalyst activators
Catalysis Science & Technology, 2020, 10, 1228-1247
1557055 CIFC20 H21 B Cl2 O2C 1 2/c 127.001; 6.0841; 25.1455
90; 108.298; 90
3922Rami, Fabian; Bächtle, Franziska; Plietker, Bernd
Hydroboration of internal alkynes catalyzed by FeH(CO)(NO)(PPh3)2: a case of boron-source controlled regioselectivity
Catalysis Science & Technology, 2020, 10, 1492-1497
1557056 CIFC22 H27 B O2C 1 2/c 135.07; 6.2286; 20.596
90; 119.212; 90
3926.8Rami, Fabian; Bächtle, Franziska; Plietker, Bernd
Hydroboration of internal alkynes catalyzed by FeH(CO)(NO)(PPh3)2: a case of boron-source controlled regioselectivity
Catalysis Science & Technology, 2020, 10, 1492-1497
1557057 CIFC22 H27 B O2P c a 2125.447; 6.3811; 24.281
90; 90; 90
3942.7Rami, Fabian; Bächtle, Franziska; Plietker, Bernd
Hydroboration of internal alkynes catalyzed by FeH(CO)(NO)(PPh3)2: a case of boron-source controlled regioselectivity
Catalysis Science & Technology, 2020, 10, 1492-1497
1557058 CIFC36.5 H57 B Cl F4 N4 P4 RhP 31 2 113.824; 13.824; 40.089
90; 90; 120
6635Cunillera, Anton; de los Bernardos, Miriam Díaz; Urrutigoïty, Martine; Claver, Carmen; Ruiz, Aurora; Godard, Cyril
Efficient synthesis of chiral γ-aminobutyric esters via direct rhodium-catalysed enantioselective hydroaminomethylation of acrylates
Catalysis Science & Technology, 2020, 10, 630-634
1557059 CIFC27 H42 B Cl2 F4 N2 P2 RhP 1 21 19.7105; 14.3281; 11.2851
90; 96.031; 90
1561.44Cunillera, Anton; de los Bernardos, Miriam Díaz; Urrutigoïty, Martine; Claver, Carmen; Ruiz, Aurora; Godard, Cyril
Efficient synthesis of chiral γ-aminobutyric esters via direct rhodium-catalysed enantioselective hydroaminomethylation of acrylates
Catalysis Science & Technology, 2020, 10, 630-634
1557155 CIFC116 H154 Cl N9 O9 Ti2P 1 21/n 126.5998; 13.18144; 32.7719
90; 104.629; 90
11118.1Sun, Ziyue; Zhao, Yanxia; Santoro, Orlando; Elsegood, Mark R. J.; Bedwell, Elizabeth V.; Zahra, Khadisha; Walton, Alex; Redshaw, Carl
Use of titanocalix[4]arenes in the ring opening polymerization of cyclic esters
Catalysis Science & Technology, 2020, 10, 1619-1639
1557156 CIFC30 H44 Cl2 O2 TiP 1 21 111.0509; 9.6943; 14.8668
90; 108.131; 90
1513.61Sun, Ziyue; Zhao, Yanxia; Santoro, Orlando; Elsegood, Mark R. J.; Bedwell, Elizabeth V.; Zahra, Khadisha; Walton, Alex; Redshaw, Carl
Use of titanocalix[4]arenes in the ring opening polymerization of cyclic esters
Catalysis Science & Technology, 2020, 10, 1619-1639
1557157 CIFC220 H283 Cl6 N15 O20 Ti6P -117.651; 18.2749; 19.8507
67.4531; 68.6833; 73.3966
5428.93Sun, Ziyue; Zhao, Yanxia; Santoro, Orlando; Elsegood, Mark R. J.; Bedwell, Elizabeth V.; Zahra, Khadisha; Walton, Alex; Redshaw, Carl
Use of titanocalix[4]arenes in the ring opening polymerization of cyclic esters
Catalysis Science & Technology, 2020, 10, 1619-1639
1557158 CIFC125 H172.5 Cl N8.5 O9 Ti2P -117.4371; 17.7765; 21.1345
100.63; 93.526; 104.426
6195.8Sun, Ziyue; Zhao, Yanxia; Santoro, Orlando; Elsegood, Mark R. J.; Bedwell, Elizabeth V.; Zahra, Khadisha; Walton, Alex; Redshaw, Carl
Use of titanocalix[4]arenes in the ring opening polymerization of cyclic esters
Catalysis Science & Technology, 2020, 10, 1619-1639
1557159 CIFC120 H164 Cl2 N6 O8 Ti2P -112.5697; 18.1183; 27.5282
104.559; 98.781; 102.093
5792.04Sun, Ziyue; Zhao, Yanxia; Santoro, Orlando; Elsegood, Mark R. J.; Bedwell, Elizabeth V.; Zahra, Khadisha; Walton, Alex; Redshaw, Carl
Use of titanocalix[4]arenes in the ring opening polymerization of cyclic esters
Catalysis Science & Technology, 2020, 10, 1619-1639
1557160 CIFC108 H140 Cl N7 O9 Ti2P -113.9465; 17.4744; 23.5392
85.6028; 74.2347; 74.5316
5320.83Sun, Ziyue; Zhao, Yanxia; Santoro, Orlando; Elsegood, Mark R. J.; Bedwell, Elizabeth V.; Zahra, Khadisha; Walton, Alex; Redshaw, Carl
Use of titanocalix[4]arenes in the ring opening polymerization of cyclic esters
Catalysis Science & Technology, 2020, 10, 1619-1639
1557161 CIFC130.71 H174.42 Cl N2.85 O11.43 Ti2P -116.3253; 17.3213; 23.5069
102.481; 91.495; 101.593
6340.9Sun, Ziyue; Zhao, Yanxia; Santoro, Orlando; Elsegood, Mark R. J.; Bedwell, Elizabeth V.; Zahra, Khadisha; Walton, Alex; Redshaw, Carl
Use of titanocalix[4]arenes in the ring opening polymerization of cyclic esters
Catalysis Science & Technology, 2020, 10, 1619-1639
1557162 CIFC113 H149.5 Cl N7.5 O9 Ti2P 1 21/n 126.6007; 13.18235; 32.7812
90; 104.622; 90
11122.7Sun, Ziyue; Zhao, Yanxia; Santoro, Orlando; Elsegood, Mark R. J.; Bedwell, Elizabeth V.; Zahra, Khadisha; Walton, Alex; Redshaw, Carl
Use of titanocalix[4]arenes in the ring opening polymerization of cyclic esters
Catalysis Science & Technology, 2020, 10, 1619-1639
1557163 CIFC49 H61 Cl N2 O4 TiP -112.14575; 18.0271; 21.0909
95.2564; 105.355; 90.2869
4432.27Sun, Ziyue; Zhao, Yanxia; Santoro, Orlando; Elsegood, Mark R. J.; Bedwell, Elizabeth V.; Zahra, Khadisha; Walton, Alex; Redshaw, Carl
Use of titanocalix[4]arenes in the ring opening polymerization of cyclic esters
Catalysis Science & Technology, 2020, 10, 1619-1639
1557164 CIFC54 H72 Cl2 N2 O4 TiC 1 2/c 143.9803; 12.41683; 19.4608
90; 94.9954; 90
10587.1Sun, Ziyue; Zhao, Yanxia; Santoro, Orlando; Elsegood, Mark R. J.; Bedwell, Elizabeth V.; Zahra, Khadisha; Walton, Alex; Redshaw, Carl
Use of titanocalix[4]arenes in the ring opening polymerization of cyclic esters
Catalysis Science & Technology, 2020, 10, 1619-1639
1557173 CIFC54.28 H49.13 Ir O0.28 P3P 1 21/c 117.31801; 12.99024; 19.71788
90; 94.4442; 90
4422.5Tickner, Ben J.; Semenova, Olga; Iali, Wissam; Rayner, Peter J.; Whitwood, Adrian C.; Duckett, Simon B.
Optimisation of pyruvate hyperpolarisation using SABRE by tuning the active magnetisation transfer catalyst.
Catalysis science & technology, 2020, 10, 1343-1355
1557174 CIFC57 H68 Cl2 Ir2 N4 O S2P 1 21/c 112.9317; 16.6; 25.5365
90; 90.2757; 90
5481.76Tickner, Ben J.; Semenova, Olga; Iali, Wissam; Rayner, Peter J.; Whitwood, Adrian C.; Duckett, Simon B.
Optimisation of pyruvate hyperpolarisation using SABRE by tuning the active magnetisation transfer catalyst.
Catalysis science & technology, 2020, 10, 1343-1355
1557528 CIFC39 H72 Cd Mo12 N6 O68 P8 Zn2P -113.126; 25.198; 30.034
113.698; 101.194; 90.634
8879Tian, Xuerui; Zhang, Yaqi; Ma, Yuanyuan; Zhao, Qing; Han, Zhangang
Hourglass-type polyoxometalate-based crystalline materials as efficient cooperating photocatalysts for the reduction of Cr(vi) and oxidation of dyes
Catalysis Science & Technology, 2020, 10, 2593-2601
1557529 CIFC26 H24 Cd1.2 Co0.8 Mo12 N4 Na4 O69 P8C 1 2/c 121.0842; 18.3743; 21.9022
90; 100.716; 90
8337.1Tian, Xuerui; Zhang, Yaqi; Ma, Yuanyuan; Zhao, Qing; Han, Zhangang
Hourglass-type polyoxometalate-based crystalline materials as efficient cooperating photocatalysts for the reduction of Cr(vi) and oxidation of dyes
Catalysis Science & Technology, 2020, 10, 2593-2601
1557530 CIFC65 H116 Al2 Cd2 Mo24 N10 O137 P16P 1 n 115.882; 21.676; 25.338
90; 94.559; 90
8695.2Tian, Xuerui; Zhang, Yaqi; Ma, Yuanyuan; Zhao, Qing; Han, Zhangang
Hourglass-type polyoxometalate-based crystalline materials as efficient cooperating photocatalysts for the reduction of Cr(vi) and oxidation of dyes
Catalysis Science & Technology, 2020, 10, 2593-2601
1557594 CIFC16 H22 Cl2 Co N4 O4P 1 21/n 19.5079; 32.3832; 13.8528
90; 110.045; 90
4006.9Anandababu, Karunanithi; Muthuramalingam, Sethuraman; Velusamy, Marappan; Mayilmurugan, Ramasamy
Single-step benzene hydroxylation by cobalt(ii) catalysts via a cobalt(iii)-hydroperoxo intermediate
Catalysis Science & Technology, 2020, 10, 2540-2548
1557595 CIFC17 H22 Cl2 Co N4 O4P 1 21/c 112.2832; 7.3066; 22.5865
90; 95.779; 90
2016.8Anandababu, Karunanithi; Muthuramalingam, Sethuraman; Velusamy, Marappan; Mayilmurugan, Ramasamy
Single-step benzene hydroxylation by cobalt(ii) catalysts via a cobalt(iii)-hydroperoxo intermediate
Catalysis Science & Technology, 2020, 10, 2540-2548
1557596 CIFC41 H44 B Cl Co N4P 21 21 219.8205; 14.0434; 26.706
90; 90; 90
3683.1Anandababu, Karunanithi; Muthuramalingam, Sethuraman; Velusamy, Marappan; Mayilmurugan, Ramasamy
Single-step benzene hydroxylation by cobalt(ii) catalysts via a cobalt(iii)-hydroperoxo intermediate
Catalysis Science & Technology, 2020, 10, 2540-2548
1557597 CIFC43 H46 B Cl Co N4P 1 21/c 116.0327; 10.7162; 22.6792
90; 107.025; 90
3725.7Anandababu, Karunanithi; Muthuramalingam, Sethuraman; Velusamy, Marappan; Mayilmurugan, Ramasamy
Single-step benzene hydroxylation by cobalt(ii) catalysts via a cobalt(iii)-hydroperoxo intermediate
Catalysis Science & Technology, 2020, 10, 2540-2548
1557658 CIFC36 H46 Cl10 Fe4 N6 O9P 1 21/n 113.612; 13.537; 14.409
90; 109.931; 90
2496.1Karim, Suhana; Chakraborty, Aratrika; Samanta, Debabrata; Zangrando, Ennio; Ghosh, Totan; Das, Debasis
A dinuclear iron complex as an efficient electrocatalyst for homogeneous water oxidation reaction
Catalysis Science & Technology, 2020, 10, 2830-2837
1557659 CIFC32 H40 Cl4 Fe2 N6 O10P 1 21/c 111.8719; 16.9617; 9.4064
90; 102.136; 90
1851.81Karim, Suhana; Chakraborty, Aratrika; Samanta, Debabrata; Zangrando, Ennio; Ghosh, Totan; Das, Debasis
A dinuclear iron complex as an efficient electrocatalyst for homogeneous water oxidation reaction
Catalysis Science & Technology, 2020, 10, 2830-2837
1557722 CIFC36 H46 N4 O6 P2P -19.437; 10.4908; 18.5143
96.9776; 99.2858; 104.161
1728.97Weder, Nicola; Probst, Benjamin; Sévery, Laurent; Fernández-Terán, Ricardo J.; Beckord, Jan; Blacque, Olivier; Tilley, S. David; Hamm, Peter; Osterwalder, Jürg; Alberto, Roger
Mechanistic insights into photocatalysis and over two days of stable H2 generation in electrocatalysis by a molecular cobalt catalyst immobilized on TiO2
Catalysis Science & Technology, 2020, 10, 2549-2560
1557723 CIFC27 H30 Br2 Co N4 O7 S2P -18.1545; 11.7917; 16.3115
107.981; 96.136; 103.72
1421.47Weder, Nicola; Probst, Benjamin; Sévery, Laurent; Fernández-Terán, Ricardo J.; Beckord, Jan; Blacque, Olivier; Tilley, S. David; Hamm, Peter; Osterwalder, Jürg; Alberto, Roger
Mechanistic insights into photocatalysis and over two days of stable H2 generation in electrocatalysis by a molecular cobalt catalyst immobilized on TiO2
Catalysis Science & Technology, 2020, 10, 2549-2560
1557724 CIFC26 H28 Br2 Co N4 O4P 1 21/n 18.0833; 11.8214; 13.6272
90; 95.751; 90
1295.61Weder, Nicola; Probst, Benjamin; Sévery, Laurent; Fernández-Terán, Ricardo J.; Beckord, Jan; Blacque, Olivier; Tilley, S. David; Hamm, Peter; Osterwalder, Jürg; Alberto, Roger
Mechanistic insights into photocatalysis and over two days of stable H2 generation in electrocatalysis by a molecular cobalt catalyst immobilized on TiO2
Catalysis Science & Technology, 2020, 10, 2549-2560
1557862 CIFC20 H35 Al N6P n a 2118.8949; 10.1078; 23.9918
90; 90; 90
4582.1Navarro, Marta; Sánchez-Barba, Luis F.; Garcés, Andrés; Fernández-Baeza, Juan; Fernández, Israel; Lara-Sánchez, Agustín; Rodríguez, Ana M.
Bimetallic scorpionate-based helical organoaluminum complexes for efficient carbon dioxide fixation into a variety of cyclic carbonates
Catalysis Science & Technology, 2020, 10, 3265-3278
1557863 CIFC33.5 H44 Al2 N6P 1 21/c 118.637; 9.384; 26.354
90; 125.325; 90
3760.4Navarro, Marta; Sánchez-Barba, Luis F.; Garcés, Andrés; Fernández-Baeza, Juan; Fernández, Israel; Lara-Sánchez, Agustín; Rodríguez, Ana M.
Bimetallic scorpionate-based helical organoaluminum complexes for efficient carbon dioxide fixation into a variety of cyclic carbonates
Catalysis Science & Technology, 2020, 10, 3265-3278
1557983 CIFC23 H33 Br Ir N3 OP 1 21/c 18.5663; 11.0966; 24.1272
90; 98.595; 90
2267.7González-Lainez, Miguel; Jiménez, M. Victoria; Passarelli, Vincenzo; Pérez-Torrente, Jesús J.
Effective N-methylation of nitroarenes with methanol catalyzed by a functionalized NHC-based iridium catalyst: a green approach to N-methyl amines
Catalysis Science & Technology, 2020, 10, 3458-3467
1557984 CIFC17 H21 Br Ir N3 O3P -19.2294; 11.1211; 11.892
99.157; 110.946; 114.394
968.3González-Lainez, Miguel; Jiménez, M. Victoria; Passarelli, Vincenzo; Pérez-Torrente, Jesús J.
Effective N-methylation of nitroarenes with methanol catalyzed by a functionalized NHC-based iridium catalyst: a green approach to N-methyl amines
Catalysis Science & Technology, 2020, 10, 3458-3467
1558022 CIFC15 H19 N O6 SP b c a13.3705; 7.2739; 31.8622
90; 90; 90
3098.78Wu, Xiao-Yun; Gui, Hou-Ze; Jangra, Harish; Wei, Yin; Zipse, Hendrik; Shi, Min
Phosphine-catalyzed [3 + 2] annulation of 2-aminoacrylates with allenoates and mechanistic studies
Catalysis Science & Technology, 2020, 10, 3959-3964
1558045 CIFC23 H22 F9 Fe N10 O9 S3P -19.1084; 11.7267; 16.3308
85.341; 89.88; 70.285
1636.05Dyckhoff, Florian; Schlagintweit, Jonas F.; Reich, Robert M.; Kühn, Fritz E.
Pushing the limits of activity and stability: the effects of Lewis acids on non-heme iron‒NHC epoxidation catalysts
Catalysis Science & Technology, 2020, 10, 3532-3536
1558072 CIFC15 H19 N2 O4 ReP 1 21/c 114.6069; 8.871; 12.0927
90; 90.801; 90
1566.79Li, Jing; Lutz, Martin; Klein Gebbink, Robertus J. M.
N,N,O-Coordinated tricarbonylrhenium precatalysts for the aerobic deoxydehydration of diols and polyols
Catalysis Science & Technology, 2020, 10, 3782-3788
1558073 CIFC23 H35 N2 O4 ReC 1 2/c 123.927; 9.4928; 22.1646
90; 106.575; 90
4825.1Li, Jing; Lutz, Martin; Klein Gebbink, Robertus J. M.
N,N,O-Coordinated tricarbonylrhenium precatalysts for the aerobic deoxydehydration of diols and polyols
Catalysis Science & Technology, 2020, 10, 3782-3788
1558074 CIFC15 H18 N3 O6 ReP b c a8.90063; 11.9803; 31.8099
90; 90; 90
3391.96Li, Jing; Lutz, Martin; Klein Gebbink, Robertus J. M.
N,N,O-Coordinated tricarbonylrhenium precatalysts for the aerobic deoxydehydration of diols and polyols
Catalysis Science & Technology, 2020, 10, 3782-3788
1558149 CIFC28 H24 Co N2 O10 S2C 1 2/c 120.1441; 12.2778; 11.4937
90; 92.993; 90
2838.8Yang, Chun; Cai, Wen-Jing; Yu, Bin-Bin; Qiu, Hong; Li, Meng-Li; Zhu, Lian-Wen; Yan, Zheng; Hou, Lei; Wang, Yao-Yu
Performance enhancement of oxygen evolution reaction through incorporating bimetallic electrocatalysts in two-dimensional metal‒organic frameworks
Catalysis Science & Technology, 2020, 10, 3897-3903
1558150 CIFC28 H24 Co0.79 Fe0.21 N2 O10 S2C 1 2/c 120.1868; 12.2668; 11.4817
90; 92.862; 90
2839.64Yang, Chun; Cai, Wen-Jing; Yu, Bin-Bin; Qiu, Hong; Li, Meng-Li; Zhu, Lian-Wen; Yan, Zheng; Hou, Lei; Wang, Yao-Yu
Performance enhancement of oxygen evolution reaction through incorporating bimetallic electrocatalysts in two-dimensional metal‒organic frameworks
Catalysis Science & Technology, 2020, 10, 3897-3903
1558151 CIFC28 H24 Co0.29 N2 Ni0.71 O10 S2C 1 2/c 120.1616; 12.1398; 11.4274
90; 92.792; 90
2793.63Yang, Chun; Cai, Wen-Jing; Yu, Bin-Bin; Qiu, Hong; Li, Meng-Li; Zhu, Lian-Wen; Yan, Zheng; Hou, Lei; Wang, Yao-Yu
Performance enhancement of oxygen evolution reaction through incorporating bimetallic electrocatalysts in two-dimensional metal‒organic frameworks
Catalysis Science & Technology, 2020, 10, 3897-3903
1558164 CIFC16 H29 Cl F6 N2 O P Ru SbP 1 21/n 111.7394; 14.7656; 14.6955
90; 108.172; 90
2420.26González-Fernández, Rebeca; Álvarez, Daniel; Crochet, Pascale; Cadierno, Victorio; Menéndez, M. Isabel; López, Ramón
Catalytic hydration of cyanamides with phosphinous acid-based ruthenium(ii) and osmium(ii) complexes: scope and mechanistic insights
Catalysis Science & Technology, 2020, 10, 4084-4098
1558165 CIFC17 H31 Cl F6 N2 O P Ru SbP 1 21/n 18.3717; 21.574; 14.8558
90; 105.025; 90
2591.39González-Fernández, Rebeca; Álvarez, Daniel; Crochet, Pascale; Cadierno, Victorio; Menéndez, M. Isabel; López, Ramón
Catalytic hydration of cyanamides with phosphinous acid-based ruthenium(ii) and osmium(ii) complexes: scope and mechanistic insights
Catalysis Science & Technology, 2020, 10, 4084-4098
1558270 CIFC70.98 H100.97 Fe2 N4 O7.98 Ti2P 1 21/c 122.6283; 8.7736; 18.5643
90; 105.17; 90
3557.2Doerr, Alicia M.; Burroughs, Justin M.; Legaux, Nicholas M.; Long, Brian K.
Redox-switchable ring-opening polymerization by tridentate ONN-type titanium and zirconium catalysts
Catalysis Science & Technology, 2020, 10, 6501-6510
1558271 CIFC39 H57.63 Fe N2 O4 ZrP 1 21/c 122.8642; 9.1582; 19.4463
90; 106.447; 90
3905.3Doerr, Alicia M.; Burroughs, Justin M.; Legaux, Nicholas M.; Long, Brian K.
Redox-switchable ring-opening polymerization by tridentate ONN-type titanium and zirconium catalysts
Catalysis Science & Technology, 2020, 10, 6501-6510
1558272 CIFC31.51 H58.93 N2 O4 ZrP -19.0808; 9.9464; 21.5037
93.147; 91.175; 115.995
1741Doerr, Alicia M.; Burroughs, Justin M.; Legaux, Nicholas M.; Long, Brian K.
Redox-switchable ring-opening polymerization by tridentate ONN-type titanium and zirconium catalysts
Catalysis Science & Technology, 2020, 10, 6501-6510
1558273 CIFC30.5 H58 N2 O4 TiP 1 21/c 126.1034; 13.6068; 18.7389
90; 90.427; 90
6655.6Doerr, Alicia M.; Burroughs, Justin M.; Legaux, Nicholas M.; Long, Brian K.
Redox-switchable ring-opening polymerization by tridentate ONN-type titanium and zirconium catalysts
Catalysis Science & Technology, 2020, 10, 6501-6510
1558490 CIFC95 H104 B2 Cl2 Co2 F10 O12 P6P b c a26.2086; 27.5599; 28.9629
90; 90; 90
20920.1Papa, Veronica; Cabrero-Antonino, Jose R.; Spannenberg, Anke; Junge, Kathrin; Beller, Matthias
Homogeneous cobalt-catalyzed deoxygenative hydrogenation of amides to amines
Catalysis Science & Technology, 2020, 10, 6116-6128
1558540 CIFC19 H21 Cl2 N RuP c a 217.1672; 13.7037; 17.9697
90; 90; 90
1764.93Chatterjee, Basujit; Kalsi, Deepti; Kaithal, Akash; Bordet, Alexis; Leitner, Walter; Gunanathan, Chidambaram
One-pot dual catalysis for the hydrogenation of heteroarenes and arenes
Catalysis Science & Technology, 2020, 10, 5163-5170
1558696 CIFC30 H47 Cl Ir NP 1 21/c 110.1037; 11.6662; 23.623
90; 97.789; 90
2758.8Zhang, Dejin; Yang, Guoqiang; Zhao, Yue; Shao, Shouyan; Zhu, Guisheng; Liu, Peijun; Liu, Jia; Hu, Xingbang; Zhang, Zhibing
Efficient methanol carbonylation to methyl acetate catalyzed by a cyclic(alkyl)(amino)carbene iridium complex
Catalysis Science & Technology, 2020, 10, 6045-6049
1558697 CIFC24 H35 Cl I0 Ir N O2P 1 21/n 19.4294; 15.2306; 16.4958
90; 94.904; 90
2360.38Zhang, Dejin; Yang, Guoqiang; Zhao, Yue; Shao, Shouyan; Zhu, Guisheng; Liu, Peijun; Liu, Jia; Hu, Xingbang; Zhang, Zhibing
Efficient methanol carbonylation to methyl acetate catalyzed by a cyclic(alkyl)(amino)carbene iridium complex
Catalysis Science & Technology, 2020, 10, 6045-6049
1559097 CIFC25 H19 NP 1 21/n 18.7417; 11.0177; 19.073
90; 101.123; 90
1802.48Nori, Valeria; Dasgupta, Ayan; Babaahmadi, Rasool; Carlone, Armando; Ariafard, Alireza; Melen, Rebecca L.
Triarylborane catalysed N-alkylation of amines with aryl esters
Catalysis Science & Technology, 2020, 10, 7523-7530
1559098 CIFC23 H19 F2 NP 1 21/c 18.9007; 11.1893; 18.1967
90; 93.764; 90
1808.35Nori, Valeria; Dasgupta, Ayan; Babaahmadi, Rasool; Carlone, Armando; Ariafard, Alireza; Melen, Rebecca L.
Triarylborane catalysed N-alkylation of amines with aryl esters
Catalysis Science & Technology, 2020, 10, 7523-7530
1559113 CIFC65 H89 In N2 O3 P2P 1 21/c 115.1464; 16.9612; 26.1549
90; 103.943; 90
6521.25Yuntawattana, Nattawut; McGuire, Thomas M.; Durr, Christopher B.; Buchard, Antoine; Williams, Charlotte K.
Indium phosphasalen catalysts showing high isoselectivity and activity in racemic lactide and lactone ring opening polymerizations
Catalysis Science & Technology, 2020, 10, 7226-7239
1559114 CIFC50 H74 N2 O2 P2P -111.4385; 15.3688; 15.4343
83.413; 78.85; 78.526
2600.66Yuntawattana, Nattawut; McGuire, Thomas M.; Durr, Christopher B.; Buchard, Antoine; Williams, Charlotte K.
Indium phosphasalen catalysts showing high isoselectivity and activity in racemic lactide and lactone ring opening polymerizations
Catalysis Science & Technology, 2020, 10, 7226-7239
1559115 CIFC57 H85 In N2 O5 P2P 21 21 2111.128; 18.2363; 30.9376
90; 90; 90
6278.28Yuntawattana, Nattawut; McGuire, Thomas M.; Durr, Christopher B.; Buchard, Antoine; Williams, Charlotte K.
Indium phosphasalen catalysts showing high isoselectivity and activity in racemic lactide and lactone ring opening polymerizations
Catalysis Science & Technology, 2020, 10, 7226-7239
1559116 CIFC65 H87 In N2 O4 P2P n a 2120.6809; 18.5748; 15.7154
90; 90; 90
6036.97Yuntawattana, Nattawut; McGuire, Thomas M.; Durr, Christopher B.; Buchard, Antoine; Williams, Charlotte K.
Indium phosphasalen catalysts showing high isoselectivity and activity in racemic lactide and lactone ring opening polymerizations
Catalysis Science & Technology, 2020, 10, 7226-7239
1559117 CIFC63 H102 In N2 O3 P2P 1 21/n 110.9894; 28.7519; 19.81
90; 91.214; 90
6257.9Yuntawattana, Nattawut; McGuire, Thomas M.; Durr, Christopher B.; Buchard, Antoine; Williams, Charlotte K.
Indium phosphasalen catalysts showing high isoselectivity and activity in racemic lactide and lactone ring opening polymerizations
Catalysis Science & Technology, 2020, 10, 7226-7239
1559118 CIFC52 H77 In N2 O3 P2P -114.2993; 14.3196; 17.8201
105.16; 107.065; 96.826
3290.3Yuntawattana, Nattawut; McGuire, Thomas M.; Durr, Christopher B.; Buchard, Antoine; Williams, Charlotte K.
Indium phosphasalen catalysts showing high isoselectivity and activity in racemic lactide and lactone ring opening polymerizations
Catalysis Science & Technology, 2020, 10, 7226-7239
1559240 CIFC18 H32 Co O4 PP -19.1926; 18.6959; 18.8899
93.315; 103.878; 98.222
3105Fischer, Fabian; Pientka, Tobias; Jiao, Haijun; Spannenberg, Anke; Hapke, Marko
CpCo(i) precatalysts for [2 + 2 + 2] cycloaddition reactions: synthesis and reactivity
Catalysis Science & Technology, 2020, 10, 8005-8014
1559241 CIFC15 H8 Co F18 O4 PP -18.808; 11.2727; 11.4608
87.2767; 86.0751; 81.5105
1122.03Fischer, Fabian; Pientka, Tobias; Jiao, Haijun; Spannenberg, Anke; Hapke, Marko
CpCo(i) precatalysts for [2 + 2 + 2] cycloaddition reactions: synthesis and reactivity
Catalysis Science & Technology, 2020, 10, 8005-8014
1559242 CIFC27 H40 Co O6 PP 1 21/c 19.342; 12.6826; 22.4709
90; 93.041; 90
2658.6Fischer, Fabian; Pientka, Tobias; Jiao, Haijun; Spannenberg, Anke; Hapke, Marko
CpCo(i) precatalysts for [2 + 2 + 2] cycloaddition reactions: synthesis and reactivity
Catalysis Science & Technology, 2020, 10, 8005-8014
1559243 CIFC24 H40 Co O6 PP 1 21/n 110.925; 12.6105; 20.1341
90; 104.561; 90
2684.77Fischer, Fabian; Pientka, Tobias; Jiao, Haijun; Spannenberg, Anke; Hapke, Marko
CpCo(i) precatalysts for [2 + 2 + 2] cycloaddition reactions: synthesis and reactivity
Catalysis Science & Technology, 2020, 10, 8005-8014
1559244 CIFC21 H34 Co N2 O6 PP 1 21/c 117.748; 8.4442; 16.239
90; 91.117; 90
2433.2Fischer, Fabian; Pientka, Tobias; Jiao, Haijun; Spannenberg, Anke; Hapke, Marko
CpCo(i) precatalysts for [2 + 2 + 2] cycloaddition reactions: synthesis and reactivity
Catalysis Science & Technology, 2020, 10, 8005-8014
1559245 CIFC33 H29 Co N O5 PP 21 21 2110.7864; 11.5313; 22.3359
90; 90; 90
2778.2Fischer, Fabian; Pientka, Tobias; Jiao, Haijun; Spannenberg, Anke; Hapke, Marko
CpCo(i) precatalysts for [2 + 2 + 2] cycloaddition reactions: synthesis and reactivity
Catalysis Science & Technology, 2020, 10, 8005-8014
1559279 CIFC58 H53 Cl3 Cu F6 N2 O5 P3C 1 2/c 135.7359; 12.1275; 27.9938
90; 112.354; 90
11220.4Li, Chenfei; Dickson, Robert; Rockstroh, Nils; Rabeah, Jabor; Cordes, David B.; Slawin, Alexandra M. Z.; Hünemörder, Paul; Spannenberg, Anke; Bühl, Michael; Mejía, Esteban; Zysman-Colman, Eli; Kamer, Paul C. J.
Ligand electronic fine-tuning and its repercussion on the photocatalytic activity and mechanistic pathways of the copper-photocatalysed aza-Henry reaction
Catalysis Science & Technology, 2020, 10, 7745-7756
1559280 CIFC57 H40 Cu F18 N2 O P3P 1 21/n 111.4434; 20.2661; 27.9804
90; 99.805; 90
6394.24Li, Chenfei; Dickson, Robert; Rockstroh, Nils; Rabeah, Jabor; Cordes, David B.; Slawin, Alexandra M. Z.; Hünemörder, Paul; Spannenberg, Anke; Bühl, Michael; Mejía, Esteban; Zysman-Colman, Eli; Kamer, Paul C. J.
Ligand electronic fine-tuning and its repercussion on the photocatalytic activity and mechanistic pathways of the copper-photocatalysed aza-Henry reaction
Catalysis Science & Technology, 2020, 10, 7745-7756
1559301 CIFC21.5 H32 Cl2 N3 O2.5 RuP 1 21/n 112.5519; 23.6646; 16.9746
90; 94.02; 90
5029.7Das, Kanu; Yasmin, Eileen; Das, Babulal; Srivastava, Hemant Kumar; Kumar, Akshai
Phosphine-free pincer-ruthenium catalyzed biofuel production: high rates, yields and turnovers of solventless alcohol alkylation
Catalysis Science & Technology, 2020, 10, 8347-8358
1559302 CIFC14 H21 Cl2 N3 O2 RuP 1 21/c 19.2304; 10.8098; 18.2395
90; 96.278; 90
1809Das, Kanu; Yasmin, Eileen; Das, Babulal; Srivastava, Hemant Kumar; Kumar, Akshai
Phosphine-free pincer-ruthenium catalyzed biofuel production: high rates, yields and turnovers of solventless alcohol alkylation
Catalysis Science & Technology, 2020, 10, 8347-8358
1559556 CIFC68 H156 O28 Si14 Zr2P -113.346; 17.309; 23.753
86.026; 89.28; 76.624
5325.4Garg, Shipra; Unruh, Daniel K.; Krempner, Clemens
Zirconium and hafnium polyhedral oligosilsesquioxane complexes ‒ green homogeneous catalysts in the formation of bio-derived ethers via a MPV/etherification reaction cascade
Catalysis Science & Technology, 2021, 11, 211-218
1559557 CIFC96 H184 O28 Si14 Zr2P b c a20.0054; 24.0516; 27.5739
90; 90; 90
13267.5Garg, Shipra; Unruh, Daniel K.; Krempner, Clemens
Zirconium and hafnium polyhedral oligosilsesquioxane complexes ‒ green homogeneous catalysts in the formation of bio-derived ethers via a MPV/etherification reaction cascade
Catalysis Science & Technology, 2021, 11, 211-218
1559558 CIFC68 H156 Hf2 O28 Si14P b c a18.563; 22.017; 26.445
90; 90; 90
10808Garg, Shipra; Unruh, Daniel K.; Krempner, Clemens
Zirconium and hafnium polyhedral oligosilsesquioxane complexes ‒ green homogeneous catalysts in the formation of bio-derived ethers via a MPV/etherification reaction cascade
Catalysis Science & Technology, 2021, 11, 211-218
1559559 CIFC96 H184 Hf2 O28 Si14P b c a20.061; 24.064; 27.568
90; 90; 90
13308Garg, Shipra; Unruh, Daniel K.; Krempner, Clemens
Zirconium and hafnium polyhedral oligosilsesquioxane complexes ‒ green homogeneous catalysts in the formation of bio-derived ethers via a MPV/etherification reaction cascade
Catalysis Science & Technology, 2021, 11, 211-218
1559560 CIFC86 H109 N9 Na2 O11 V2P -113.4214; 14.2596; 25.2549
85.709; 78.946; 69.251
4435.9Xing, Tian; Prior, Timothy J.; Elsegood, Mark R. J.; Semikolenova, Nina V.; Soshnikov, Igor E.; Bryliakov, Konstantin; Chen, Kai; Redshaw, Carl
Vanadium complexes derived from oxacalix[6]arenes: structural studies and use in the ring opening homo-/co-polymerization of ε-caprolactone/δ-valerolactone and ethylene polymerization
Catalysis Science & Technology, 2021, 11, 624-636
1559561 CIFC104 H120 N8 O8 V2P -112.0966; 12.3373; 17.8971
90.8728; 107.997; 99.2458
2501.28Xing, Tian; Prior, Timothy J.; Elsegood, Mark R. J.; Semikolenova, Nina V.; Soshnikov, Igor E.; Bryliakov, Konstantin; Chen, Kai; Redshaw, Carl
Vanadium complexes derived from oxacalix[6]arenes: structural studies and use in the ring opening homo-/co-polymerization of ε-caprolactone/δ-valerolactone and ethylene polymerization
Catalysis Science & Technology, 2021, 11, 624-636
1559562 CIFC80 H90 Cl2 N2 O8 V2P 1 21/n 119.7039; 20.0862; 20.6921
90; 113.114; 90
7532Xing, Tian; Prior, Timothy J.; Elsegood, Mark R. J.; Semikolenova, Nina V.; Soshnikov, Igor E.; Bryliakov, Konstantin; Chen, Kai; Redshaw, Carl
Vanadium complexes derived from oxacalix[6]arenes: structural studies and use in the ring opening homo-/co-polymerization of ε-caprolactone/δ-valerolactone and ethylene polymerization
Catalysis Science & Technology, 2021, 11, 624-636
1559563 CIFC178 H213 N11 O20 V4P -114.0354; 17.3396; 20.1906
71.168; 84.459; 66.456
4260.59Xing, Tian; Prior, Timothy J.; Elsegood, Mark R. J.; Semikolenova, Nina V.; Soshnikov, Igor E.; Bryliakov, Konstantin; Chen, Kai; Redshaw, Carl
Vanadium complexes derived from oxacalix[6]arenes: structural studies and use in the ring opening homo-/co-polymerization of ε-caprolactone/δ-valerolactone and ethylene polymerization
Catalysis Science & Technology, 2021, 11, 624-636
1559564 CIFC86 H114 N6 O16 V4P -112.4983; 13.6976; 14.1554
68.166; 79.128; 75.546
2165.92Xing, Tian; Prior, Timothy J.; Elsegood, Mark R. J.; Semikolenova, Nina V.; Soshnikov, Igor E.; Bryliakov, Konstantin; Chen, Kai; Redshaw, Carl
Vanadium complexes derived from oxacalix[6]arenes: structural studies and use in the ring opening homo-/co-polymerization of ε-caprolactone/δ-valerolactone and ethylene polymerization
Catalysis Science & Technology, 2021, 11, 624-636
1559565 CIFC82 H90 F6 N2 O8 V2P 1 21/c 120.0005; 19.9315; 22.023
90; 116.08; 90
7885.4Xing, Tian; Prior, Timothy J.; Elsegood, Mark R. J.; Semikolenova, Nina V.; Soshnikov, Igor E.; Bryliakov, Konstantin; Chen, Kai; Redshaw, Carl
Vanadium complexes derived from oxacalix[6]arenes: structural studies and use in the ring opening homo-/co-polymerization of ε-caprolactone/δ-valerolactone and ethylene polymerization
Catalysis Science & Technology, 2021, 11, 624-636
1559566 CIFC355 H421 Cl2 N21 O32 V8P -119.7899; 20.6775; 22.7696
69.271; 76.567; 78.627
8407.9Xing, Tian; Prior, Timothy J.; Elsegood, Mark R. J.; Semikolenova, Nina V.; Soshnikov, Igor E.; Bryliakov, Konstantin; Chen, Kai; Redshaw, Carl
Vanadium complexes derived from oxacalix[6]arenes: structural studies and use in the ring opening homo-/co-polymerization of ε-caprolactone/δ-valerolactone and ethylene polymerization
Catalysis Science & Technology, 2021, 11, 624-636
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

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