1 |
Catalyst design for highly efficient carbon dioxide hydrogenation to formic acid under buffering conditions Weilhard A, Salzmann K, Navarro M, Dupont J, Albrecht M, Sans V Journal of Catalysis, 385, 1, 2020 |
2 |
On the real catalytically active species for CO2 fixation into cyclic carbonates under near ambient conditions: Dissociation equilibrium of [BMIm] [Fe(NO)(2)Cl-2] dependant on reaction temperature Leu MK, Vicente I, Fernandes JA, De Pedro I, Dupont J, Sans V, Licence P, Gual A, Cano I Applied Catalysis B: Environmental, 245, 240, 2019 |
3 |
Coding the Assembly of Polyoxotungstates with a Programmable Reaction System de la Oliva AR, Sans V, Miras HN, Long DL, Cronin L Inorganic Chemistry, 56(9), 5089, 2017 |
4 |
A Simple Approach to the Visible-Light Photoactivation of Molecular Metal Oxides Fujimoto S, Cameron JM, Wei RJ, Kastner K, Robinson D, Sans V, Newton GN, Oshio H Inorganic Chemistry, 56(20), 12169, 2017 |
5 |
Polymer-supported Pd-NHC complexes: Strategies for the development of multifunctional systems Sans V, Gelat F, Burguete MI, Garcia-Verdugo E, Luis SV Catalysis Today, 196(1), 137, 2012 |
6 |
Pd catalysts immobilized onto gel-supported ionic liquid-like phases (g-SILLPs): A remarkable effect of the nature of the support Burguete MI, Garcia-Verdugo E, Garcia-Villar I, Gelat F, Licence P, Luis SV, Sans V Journal of Catalysis, 269(1), 150, 2010 |
7 |
Supported N-heterocyclic carbene rhodium complexes as highly selective hydroformylation catalysts Gil W, Boczon K, Trzeciak AM, Ziolkowski JJ, Garcia-Verdugo E, Luis SV, Sans V Journal of Molecular Catalysis A-Chemical, 309(1-2), 131, 2009 |
8 |
PdCl2(P(OPh)(3))(2) catalyzed coupling and carbonylative coupling of phenylacetylenes with aryl iodides in organic solvents and in ionic liquids Sans V, Trzeciak AM, Luis S, Ziolkowski JJ Catalysis Letters, 109(1-2), 37, 2006 |