Enhancing the electrocatalytic activity of 2H-WS2 for hydrogen evolution via defect engineering

Publication date

2019

Authors

Wu, LongfeiISNI 0000000492960446
Van Hoof, Arno J.F.
Dzade, Nelson Y.ISNI 0000000453589015
Gao, Lu
Richard, Marie Ingrid
Friedrich, Heiner
de Leeuw, Nora H.ISNI 0000000124340366
Hensen, Emiel J.M.
Hofmann, Jan P.ISNI 0000000077004211

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Article
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Abstract

Transition metal dichalcogenides (TMDs), such as MoS2 and WS2, are promising alternative non-noble metal catalysts to drive the electrocatalytic H2 evolution reaction (HER). However, their catalytic performance is inherently limited by the small number of active sites as well as their poor electrical conductivity. Here, we grow vertically aligned 2H-WS2 on different substrates to expose their edge sites for the HER and introduce a scalable approach to tune these active sites via defect engineering. In a thermal hydrogen treatment procedure, sulfur vacancies and metallic tungsten nanoparticles are formed. The extent of desulfurization, and thus the HER activity, can be tuned via controlling the H2 annealing conditions. The obtained W/WS2-x electrocatalysts are evaluated experimentally and theoretically to arrive at a better understanding of how to modify the inherently inert 2H-WS2 for more efficient HER.

Keywords

General Physics and Astronomy, Physical and Theoretical Chemistry

Citation

Wu, L, Van Hoof, A J F, Dzade, N Y, Gao, L, Richard, M I, Friedrich, H, De Leeuw, N H, Hensen, E J M & Hofmann, J P 2019, 'Enhancing the electrocatalytic activity of 2H-WS2 for hydrogen evolution via defect engineering', Physical Chemistry Chemical Physics, vol. 21, no. 11, pp. 6071-6079. https://doi.org/10.1039/c9cp00722a