Crystallography Open Database

Result: there are 44 entries in the selection

Switch to the old layout of the page

Download all results as: list of COD numbers | list of CIF URLs | data in CSV format | archive of CIF files (ZIP)

Searching journal of publication like 'Catalysis Science & Technology' volume of publication is 8

Blue left arrow Blue left arrow First | Blue left arrow Previous 20 | of 3 | Next 20 Blue right arrow | Last Blue right arrow Blue right arrow | Display 5 20 50 100 200 300 500 1000 entries per page

COD ID Blue up arrow Links Formula Up arrow Space group Up arrow Cell parameters Cell volume Up arrow Bibliography
1549590 CIFC15 H29 B2 Cl2 Co F8 N5 OP -16.838; 13.077; 13.377
89.44; 78.44; 82.78
1162.5Midya, Siba P.; Pitchaimani, Jayaraman; Landge, Vinod G.; Madhu, Vedichi; Balaraman, Ekambaram
Direct access toN-alkylated amines and iminesviaacceptorless dehydrogenative coupling catalyzed by a cobalt(ii)-NNN pincer complex
Catalysis Science & Technology, 2018, 8, 3469
1549609 CIFC28 H18 Cu3 N10 O15C 1 2/c 131.977; 18.3536; 14.7633
90; 91.413; 90
8661.8Ahmad, Nazir; Younus, Hussein A.; Chughtai, Adeel H.; Van Hecke, Kristof; Khattak, Zafar A. K.; Gaoke, Zhang; Danish, Muhammad; Verpoort, Francis
Synthesis of 2D MOF having potential for efficient dye adsorption and catalytic applications
Catalysis Science & Technology, 2018, 8, 4010
1549715 CIFC86 H157 K2 Mn8 N O42P 1 21/n 118.998; 15.678; 20.236
90; 100.84; 90
5920Mousazade, Younes; Mohammadi, Mohammad Reza; Chernev, Petko; Bikas, Rahman; Bagheri, Robabeh; Song, Zhenlun; Lis, Tadeusz; Dau, Holger; Najafpour, Mohammad Mahdi
Water oxidation by a manganese‒potassium cluster: Mn oxide as a kinetically dominant “true” catalyst for water oxidation
Catalysis Science & Technology, 2018, 8, 4390
1549739 CIFC8 H4.19 Al I0.82 O5I m m a16.501; 6.6194; 13.21
90; 90; 90
1442.9Tahmouresilerd, Babak; Larson, Patrick J.; Unruh, Daniel K.; Cozzolino, Anthony F.
Make room for iodine: systematic pore tuning of multivariate metal‒organic frameworks for the catalytic oxidation of hydroquinones using hypervalent iodine
Catalysis Science & Technology, 2018, 8, 4349
1549740 CIFC8 H4.3 Al I0.7 O5.25I m m a17.107; 6.622; 12.229
90; 90; 90
1385.3Tahmouresilerd, Babak; Larson, Patrick J.; Unruh, Daniel K.; Cozzolino, Anthony F.
Make room for iodine: systematic pore tuning of multivariate metal‒organic frameworks for the catalytic oxidation of hydroquinones using hypervalent iodine
Catalysis Science & Technology, 2018, 8, 4349
1549749 CIFC31 H53 Rh2 S2P 1 21/n 110.855; 28.6007; 10.8441
90; 119.239; 90
2937.7Serrano-Maldonado, A.; Rozenel, S. S.; Jimenez-Santiago, J. L.; Guerrero-Ríos, I.; Martin, E.
Rh nanoparticles from thiolate dimers: selective and reusable hydrogenation catalysts in ionic liquids
Catalysis Science & Technology, 2018, 8, 4373
1549750 CIFC40 H74 Rh2 S2P 1 21/m 18.734; 26.987; 8.39
90; 90; 90
1977.6Serrano-Maldonado, A.; Rozenel, S. S.; Jimenez-Santiago, J. L.; Guerrero-Ríos, I.; Martin, E.
Rh nanoparticles from thiolate dimers: selective and reusable hydrogenation catalysts in ionic liquids
Catalysis Science & Technology, 2018, 8, 4373
1549855 CIFC21 H33 Cl2 N Si TiP -18.268; 11.8794; 12.9943
71.395; 78.04; 70.734
1134.41Williams, Thomas J.; Buffet, Jean-Charles; Turner, Zoë R.; O'Hare, Dermot
Group 4 permethylindenyl constrained geometry complexes for ethylene polymerisation catalysis
Catalysis Science & Technology, 2018, 8, 5454
1549856 CIFC32 H49 Cl2 N Si TiP -19.966; 12.4507; 15.2615
112.445; 108.902; 90.786
1635.29Williams, Thomas J.; Buffet, Jean-Charles; Turner, Zoë R.; O'Hare, Dermot
Group 4 permethylindenyl constrained geometry complexes for ethylene polymerisation catalysis
Catalysis Science & Technology, 2018, 8, 5454
1549857 CIFC20 H31 Cl2 N Si TiP 1 21/c 111.5225; 12.9843; 15.2891
90; 104.979; 90
2209.7Williams, Thomas J.; Buffet, Jean-Charles; Turner, Zoë R.; O'Hare, Dermot
Group 4 permethylindenyl constrained geometry complexes for ethylene polymerisation catalysis
Catalysis Science & Technology, 2018, 8, 5454
1549858 CIFC23 H26 Ir N O3P b c a16.13031; 14.54437; 17.33703
90; 90; 90
4067.36Pèrez-Miqueo, Jorge; San Nacianceno, Virginia; Urquiola, F. Borja; Freixa, Zoraida
Revisiting the iridacycle-catalyzed hydrosilylation of enolizable imines
Catalysis Science & Technology, 2018, 8, 6316
1549873 CIFC28 H34 Cl Ir N2P -19.7423; 11.066; 12.1673
100.717; 104.685; 96.543
1228.72Wong, Chin Min; Fekete, Marianna; Nelson-Forde, Rhianna; Gatus, Mark R. D.; Rayner, Peter J.; Whitwood, Adrian C.; Duckett, Simon B.; Messerle, Barbara A.
Harnessing asymmetric N-heterocyclic carbene ligands to optimise SABRE hyperpolarisation.
Catalysis science & technology, 2018, 8, 4925-4933
1549904 CIFC17 H21 N O2 SP -17.4134; 8.4142; 12.1239
84.72; 88.99; 84.549
749.62Llorente, Nuria; Fernández-Pérez, Héctor; Bauzá, Antonio; Frontera, Antonio; Vidal-Ferran, Anton
Ni-Catalysed Intramolecular [4+4]-cycloadditions of bis-dienes towards eight-membered fused bicyclic systems: a combined experimental and computational study
Catalysis Science & Technology, 2018, 8, 5251
1549905 CIFC16 H22 O4P -16.2605; 9.8392; 12.7844
67.7938; 88.4599; 84.1325
725.21Llorente, Nuria; Fernández-Pérez, Héctor; Bauzá, Antonio; Frontera, Antonio; Vidal-Ferran, Anton
Ni-Catalysed Intramolecular [4+4]-cycloadditions of bis-dienes towards eight-membered fused bicyclic systems: a combined experimental and computational study
Catalysis Science & Technology, 2018, 8, 5251
1549933 CIFC49 H50 N6 O YP 1 2/n 122.637; 9.781; 23.089
90; 118.062; 90
4511Zhang, Dexing; Liu, Ruiting; Zhou, Xigeng
Intramolecular alkene hydroamination and degradation of amidines: divergent behavior of rare earth metal amidinate intermediates
Catalysis Science & Technology, 2018, 8, 5573
1550033 CIFC37 H46 B Cl2 Cu F4 N8P 1 21/c 120.808; 31.071; 12.2164
90; 90.694; 90
7897.6Zelenay, Benjamin; Besora, Maria; Monasterio, Zaira; Ventura-Espinosa, David; White, Andrew J. P.; Maseras, Feliu; Díez-González, Silvia
Copper-mediated reduction of azides under seemingly oxidising conditions: catalytic and computational studies
Catalysis Science & Technology, 2018, 8, 5763
1550034 CIFC33.5 H41 Cl Cu F3 N4 O3 SP 1 21/n 112.3905; 19.0233; 14.481
90; 102.996; 90
3325.86Zelenay, Benjamin; Besora, Maria; Monasterio, Zaira; Ventura-Espinosa, David; White, Andrew J. P.; Maseras, Feliu; Díez-González, Silvia
Copper-mediated reduction of azides under seemingly oxidising conditions: catalytic and computational studies
Catalysis Science & Technology, 2018, 8, 5763
1550035 CIFC37 H44 Cu F3 N4 O3 SP -19.1002; 10.9858; 19.3481
89.693; 79.192; 82.793
1884.64Zelenay, Benjamin; Besora, Maria; Monasterio, Zaira; Ventura-Espinosa, David; White, Andrew J. P.; Maseras, Feliu; Díez-González, Silvia
Copper-mediated reduction of azides under seemingly oxidising conditions: catalytic and computational studies
Catalysis Science & Technology, 2018, 8, 5763
1550044 CIFC22 H26 I Ir N4P -18.5611; 10.9802; 13.2254
109.051; 102.4; 90.413
1143.69Semwal, Shrivats; Kumar, Abhishek; Choudhury, Joyanta
Iridium‒NHC-based catalyst for ambient pressure storage and low temperature release of H2via the CO2/HCO2H couple
Catalysis Science & Technology, 2018, 8, 6137
1550236 CIFC22 H23 NP -19.7438; 9.9224; 10.984
64.086; 78.354; 63.503
854.8Abdellah, Ibrahim; Poater, Albert; Lohier, Jean-François; Gaumont, Annie-Claude
Au(i)-Catalyzed hydroarylation of alkenes with N,N-dialkylanilines: a dual gold catalysis concept
Catalysis Science & Technology, 2018, 8, 6486

Blue left arrow Blue left arrow First | Blue left arrow Previous 20 | of 3 | Next 20 Blue right arrow | Last Blue right arrow Blue right arrow | Display 5 20 50 100 200 300 500 1000 entries per page

Back to the search form
Your own data is not in the COD? Deposit it, thanks!