Finding the catalytically active sites on the layered tri-chalcogenide compounds CoPS and NiPS for hydrogen evolution reaction

Electronic structure calculations based on density functional theory are used to identify the catalytically active sites for the hydrogen evolution reaction on single layers of the two transition metal tri-chalcogenide compounds CoPS 3 and NiPS 3 . Some of the under-coordinated P and S atoms at the...

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Veröffentlicht in:Physical chemistry chemical physics : PCCP 2021-10, Vol.23 (41), p.23967-23977
Hauptverfasser: Alam, Khorsed, Das, Tisita, Chakraborty, Sudip, Sen, Prasenjit
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Zusammenfassung:Electronic structure calculations based on density functional theory are used to identify the catalytically active sites for the hydrogen evolution reaction on single layers of the two transition metal tri-chalcogenide compounds CoPS 3 and NiPS 3 . Some of the under-coordinated P and S atoms at the edges are found to act as the active sites, the details of which depend on the coverage of H on the electrode. Overpotentials along the two possible pathways for HER are also estimated for the two materials. These findings not only resolve an apparent discrepancy between published experimental results and our earlier calculations, but also provide insights which can be used to enhance catalytic efficiency of these materials further. Electronic structure calculations based on density functional theory are used to identify the catalytically active sites for the hydrogen evolution reaction on single layers of the two transition metal tri-chalcogenide compounds CoPS 3 and NiPS 3 .
ISSN:1463-9076
1463-9084
DOI:10.1039/d1cp01539g