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M Koper

Showing results (31-40 of 308) with videos related to

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Angewandte Chemie (International Ed. in English)|September 27, 2016
Reactivity Descriptors for the Activity of Molecular MN4 Catalysts for the Oxygen Reduction ReactionJosé H Zagal, Marc T M Koper
Physical Chemistry Chemical Physics : PCCP|December 22, 2009
A sublattice-model isotherm for the competitive coadsorption of hydrogen and bromide on a Pt(100) electrodeN Garcia-Araez, M T M Koper
ACS Catalysis|April 11, 2024
Nickel as Electrocatalyst for CO<sub>(2)</sub> Reduction: Effect of Temperature, Potential, Partial Pressure, and Electrolyte CompositionRafaël E Vos, Marc T M Koper
Chemical Science|April 29, 2017
Proton-coupled electron transfer in the electrocatalysis of CO<sub>2</sub> reduction: prediction of sequential <i>vs.</i> concerted pathways using DFTAdrien J Göttle, Marc T M Koper
Journal of the American Chemical Society|March 20, 2018
Determinant Role of Electrogenerated Reactive Nucleophilic Species on Selectivity during Reduction of CO<sub>2</sub> Catalyzed by MetalloporphyrinsAdrien J Göttle, Marc T M Koper
Soft Matter|March 22, 2014
Optimal ionic strength for nonionically initiated polymerizationMarta E Dobrowolska, Ger J M Koper
Journal of the American Chemical Society|July 6, 2019
Electrochemical Reduction of the Carbonyl Functional Group: The Importance of Adsorption Geometry, Molecular Structure, and Electrode Surface StructureChristoph J Bondue, Marc T M Koper
Angewandte Chemie (International Ed. in English)|June 5, 2013
Theoretical considerations on the electroreduction of CO to C2 species on Cu(100) electrodesFederico Calle-Vallejo, Marc T M Koper
ACS Catalysis|February 26, 2026
The Role of Surface Science in ElectrocatalysisJulia Fernández-Vidal, Marc T M Koper
Biomacromolecules|May 14, 2003
Effect of oxidation rate on cross-linking of mussel adhesive proteinsSander Haemers, Ger J M Koper, Gert Frens
Pageof 31

Showing results (31-40 of 308) with videos related to

Sort By:
Pageof 31
Angewandte Chemie (International Ed. in English)|September 27, 2016
Reactivity Descriptors for the Activity of Molecular MN4 Catalysts for the Oxygen Reduction ReactionJosé H Zagal, Marc T M Koper
Physical Chemistry Chemical Physics : PCCP|December 22, 2009
A sublattice-model isotherm for the competitive coadsorption of hydrogen and bromide on a Pt(100) electrodeN Garcia-Araez, M T M Koper
ACS Catalysis|April 11, 2024
Nickel as Electrocatalyst for CO<sub>(2)</sub> Reduction: Effect of Temperature, Potential, Partial Pressure, and Electrolyte CompositionRafaël E Vos, Marc T M Koper
Chemical Science|April 29, 2017
Proton-coupled electron transfer in the electrocatalysis of CO<sub>2</sub> reduction: prediction of sequential <i>vs.</i> concerted pathways using DFTAdrien J Göttle, Marc T M Koper
Journal of the American Chemical Society|March 20, 2018
Determinant Role of Electrogenerated Reactive Nucleophilic Species on Selectivity during Reduction of CO<sub>2</sub> Catalyzed by MetalloporphyrinsAdrien J Göttle, Marc T M Koper
Soft Matter|March 22, 2014
Optimal ionic strength for nonionically initiated polymerizationMarta E Dobrowolska, Ger J M Koper
Journal of the American Chemical Society|July 6, 2019
Electrochemical Reduction of the Carbonyl Functional Group: The Importance of Adsorption Geometry, Molecular Structure, and Electrode Surface StructureChristoph J Bondue, Marc T M Koper
Angewandte Chemie (International Ed. in English)|June 5, 2013
Theoretical considerations on the electroreduction of CO to C2 species on Cu(100) electrodesFederico Calle-Vallejo, Marc T M Koper
ACS Catalysis|February 26, 2026
The Role of Surface Science in ElectrocatalysisJulia Fernández-Vidal, Marc T M Koper
Biomacromolecules|May 14, 2003
Effect of oxidation rate on cross-linking of mussel adhesive proteinsSander Haemers, Ger J M Koper, Gert Frens
Pageof 31