Challenges in the Greener Production of Formates/Formic Acid, Methanol, and DME by Heterogeneously Catalyzed CO2 Hydrogenation Processes A Álvarez, A Bansode, A Urakawa, AV Bavykina, TA Wezendonk, ... Chemical reviews 117 (14), 9804-9838, 2017 | 1361 | 2017 |
CO2‐to‐Methanol Hydrogenation on Zirconia‐Supported Copper Nanoparticles: Reaction Intermediates and the Role of the Metal–Support Interface K Larmier, WC Liao, S Tada, E Lam, R Verel, A Bansode, A Urakawa, ... Angewandte Chemie International Edition 56 (9), 2318-2323, 2017 | 582 | 2017 |
CO2 Activation over Catalytic Surfaces A Álvarez, M Borges, JJ Corral‐Pérez, JG Olcina, L Hu, D Cornu, ... ChemPhysChem 18 (22), 3135-3141, 2017 | 346 | 2017 |
Towards full one-pass conversion of carbon dioxide to methanol and methanol-derived products A Bansode, A Urakawa Journal of Catalysis 309, 66-70, 2014 | 340 | 2014 |
Diastereodivergent asymmetric sulfa-Michael additions of α-branched enones using a single chiral organic catalyst X Tian, C Cassani, Y Liu, A Moran, A Urakawa, P Galzerano, E Arceo, ... Journal of the American Chemical Society 133 (44), 17934-17941, 2011 | 247 | 2011 |
Methane hydrate formation in confined nanospace can surpass nature ME Casco, J Silvestre-Albero, AJ Ramírez-Cuesta, F Rey, JL Jordá, ... Nature communications 6 (1), 6432, 2015 | 246 | 2015 |
Unravelling the Role of Oxygen Vacancies in the Mechanism of the Reverse Water–Gas Shift Reaction by Operando DRIFTS and Ultraviolet–Visible Spectroscopy LF Bobadilla, JL Santos, S Ivanova, JA Odriozola, A Urakawa ACS Catalysis 8 (8), 7455-7467, 2018 | 244 | 2018 |
CO2 catalysis AW Kleij, M North, A Urakawa ChemSusChem, 1-4, 2017 | 236 | 2017 |
Sensitivity enhancement and dynamic behavior analysis by modulation excitation spectroscopy: Principle and application in heterogeneous catalysis A Urakawa, T Bürgi, A Baiker Chemical Engineering Science 63 (20), 4902-4909, 2008 | 227 | 2008 |
Impact of K and Ba promoters on CO 2 hydrogenation over Cu/Al 2 O 3 catalysts at high pressure A Bansode, B Tidona, PR von Rohr, A Urakawa Catalysis Science & Technology 3 (3), 767-778, 2013 | 203 | 2013 |
High-pressure advantages in stoichiometric hydrogenation of carbon dioxide to methanol R Gaikwad, A Bansode, A Urakawa Journal of catalysis 343, 127-132, 2016 | 179 | 2016 |
Continuous DMC synthesis from CO2 and methanol over a CeO2 catalyst in a fixed bed reactor in the presence of a dehydrating agent A Bansode, A Urakawa ACS Catalysis 4 (11), 3877-3880, 2014 | 164 | 2014 |
Copper metal–organic framework: Structure and activity in the allylic oxidation of cyclohexene with molecular oxygen D Jiang, T Mallat, DM Meier, A Urakawa, A Baiker Journal of Catalysis 270 (1), 26-33, 2010 | 160 | 2010 |
One-pot conversion of furfural to useful bio-products in the presence of a Sn, Al-containing zeolite beta catalyst prepared via post-synthesis routes MM Antunes, S Lima, P Neves, AL Magalhães, E Fazio, A Fernandes, ... Journal of Catalysis 329, 522-537, 2015 | 159 | 2015 |
Oxidative coupling of methane—A complex surface/gas phase mechanism with strong impact on the reaction engineering B Beck, V Fleischer, S Arndt, MG Hevia, A Urakawa, P Hugo, ... Catalysis Today 228, 212-218, 2014 | 159 | 2014 |
Air-stable gold nanoparticles ligated by secondary phosphine oxides for the chemoselective hydrogenation of aldehydes: crucial role of the ligand I Cano, AM Chapman, A Urakawa, PWNM van Leeuwen Journal of the American Chemical Society 136 (6), 2520-2528, 2014 | 153 | 2014 |
CO2 Hydrogenation on Cu/Al2O3: Role of the Metal/Support Interface in Driving Activity and Selectivity of a Bifunctional Catalyst E Lam, JJ Corral‐Pérez, K Larmier, G Noh, P Wolf, A Comas‐Vives, ... Angewandte Chemie International Edition 58 (39), 13989-13996, 2019 | 152 | 2019 |
Carbon Dioxide Hydrogenation Catalyzed by a Ruthenium Dihydride: A DFT and High‐Pressure Spectroscopic Investigation A Urakawa, F Jutz, G Laurenczy, A Baiker Chemistry–A European Journal 13 (14), 3886-3899, 2007 | 143 | 2007 |
Improving the Stability of CeO2 Catalyst by Rare Earth Metal Promotion and Molecular Insights in the Dimethyl Carbonate Synthesis from CO2 and Methanol with 2 … D Stoian, F Medina, A Urakawa ACS Catalysis 8 (4), 3181-3193, 2018 | 127 | 2018 |
Protonation-dependent binding of ruthenium bipyridyl complexes to the anatase (101) surface F Schiffmann, J VandeVondele, J Hutter, R Wirz, A Urakawa, A Baiker The Journal of Physical Chemistry C 114 (18), 8398-8404, 2010 | 121 | 2010 |