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Preprint article ยท Journal article

The Predominance of Hydrogen Evolution on Transition Metal Sulfides and Phosphides under CO2 Reduction Conditions: An Experimental and Theoretical Study

In Acs Energy Letters โ€” 2018, Volume 3, Issue 6, pp. 1450-1457
From

SLAC National Accelerator Laboratory1

California Institute of Technology2

Department of Physics, Technical University of Denmark3

Surface Physics and Catalysis, Department of Physics, Technical University of Denmark4

Stanford University5

A combination of experiment and theory has been used to understand the relationship between the hydrogen evolution reaction (HER) and CO2 reduction (CO2R) on transition metal phosphide and transition metal sulfide catalysts. Although multifunctional active sites in these materials could potentially improve their CO2R activity relative to pure transition metal electrocatalysts, under aqueous testing conditions, these materials showed a high selectivity for the HER relative to CO2R.

Computational results supported these findings, indicating that a limitation of the metal phosphide catalysts is that the HER is favored thermodynamically over CO2R. On Ni-MoS2, a limitation is the kinetic barrier for the proton electron transfer to *CO. These theoretical and experimental results demonstrate that selective CO2R requires electrocatalysts that possess both favorable thermodynamic pathways and surmountable kinetic barriers.

Language: English
Publisher: American Chemical Society
Year: 2018
Pages: 1450-1457
ISSN: 23808195
Types: Preprint article and Journal article
DOI: 10.1021/acsenergylett.8b00237
ORCIDs: 0000-0002-6222-817X , 0000-0003-1779-6140 , Kibsgaard, Jakob , 0000-0001-5245-0538 , 0000-0002-6897-1108 , 0000-0002-2772-6341 and 0000-0001-9900-0622

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