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Accounts of Chemical Research|December 24, 2025
Nature and Dynamics of Active Sites in Cu-Based Catalysts for the CO2 Hydrogenation to MethanolAleix Comas-Vives, Christophe CopéretJournal of the American Chemical Society|May 4, 2021
Deciphering Metal-Oxide and Metal-Metal Interplay via Surface Organometallic Chemistry: A Case Study with CO2 Hydrogenation to MethanolScott R Docherty, Christophe CopéretChimia|November 14, 2012
Solid-state NMR: an eye opener in surface chemistryMatthew P Conley, Christophe CopéretThe Journal of Physical Chemistry. B|February 4, 2026
35Cl Nuclear Quadrupole Resonance: A Cl-specific Probe of Local Structural Motifs in PVCAnna G Nobile, Christophe CopéretChimia|October 29, 2015
The Role of Proton Transfer in Heterogeneous Transformations of HydrocarbonsDeven P Estes, Christophe CopéretJournal of the American Chemical Society|April 3, 2020
Cp2Ti(κ2-BuNCNBu): A Complex with an Unusual κ2 Coordination Mode of a Heterocumulene Featuring a Free CarbeneEvan P Beaumier, Christopher P Gordon, Robin P Harkins, et al.Nature|October 29, 2020
Efficient epoxidation over dinuclear sites in titanium silicalite-1Christopher P Gordon, Hauke Engler, Amadeus Samuel Tragl, et al.Accounts of Chemical Research|November 6, 2025
The Universal Role of Gallium in Promoting Methanol Formation across CO2 Hydrogenation CatalystsColin Hansen, Wei Zhou, Christophe CopéretInorganic Chemistry|April 12, 2016
Highly Active Subnanometer Au Particles Supported on TiO2 for Photocatalytic Hydrogen Evolution from a Well-Defined Organogold Precursor, [Au5(mesityl)5]Georges Siddiqi, Victor Mougel, Christophe CopéretJournal of the American Chemical Society|May 11, 2026
PdGa Alloy Dynamics under CO2 Hydrogenation from Surface Organometallic Chemistry on a Chip and Operando Transmission Electron MicroscopyEnzo Brack, Milivoj Plodinec, Christophe CopéretPageof 35