2H–2M Phase Control of WSe2 Nanosheets by Se Enrichment Toward Enhanced Electrocatalytic Hydrogen Evolution Reaction

Author:

Kwon Ik Seon12ORCID,Kwak In Hye13ORCID,Kim Ju Yeon1ORCID,Lee Seung Jae1,Sial Qadeer Akbar1,Ihsan Junaid1,Lee Kug‐Seung3,Yoo Seung Jo4,Park Jeunghee1ORCID,Kang Hong Seok5

Affiliation:

1. Department of Advanced Materials Chemistry Korea University Sejong 339‐700 Republic of Korea

2. Beamline Science Team 4GSR Project Headquarters Pohang Accelerator Laboratory Pohang University of Science and Technology Pohang 37673 Republic of Korea

3. Pohang Accelerator Laboratory Pohang University of Science and Technology Pohang 37673 Republic of Korea

4. Division of Scientific Instrumentation & Management Korea Basic Science Institute Daejeon 305‐806 Republic of Korea

5. Department of Nano and Advanced Materials Jeonju University Chonju Chonbuk 55069 Republic of Korea

Abstract

AbstractThe phase control of transition metal dichalcogenides (TMDs) is an intriguing approach for tuning the electronic structure toward extensive applications. In this study, WSe2 nanosheets synthesized via a colloidal reaction exhibit a phase conversion from semiconducting 2H to metallic 2M under Se‐rich growth conditions (i.e., increasing the concentration of Se precursor or lowering the growth temperature). High‐resolution scanning transmission electron microscopy images are used to identify the stacking sequence of the 2M phase, which is distinctive from that of the 1T′ phase. First‐principles calculations employing various Se‐rich models (intercalation and substitution) indicated that Se enrichment induces conversion to the 2M phase. The 2M phase WSe2 nanosheets with the Se excess exhibited enhanced electrocatalytic performance in the hydrogen evolution reaction (HER). In situ X‐ray absorption fine structure studies suggested that the excess Se atoms in the 2M phase WSe2 enhanced the HER catalytic activity, which is supported by the Gibbs free energy (ΔGH*) of H adsorption and the Fermi abundance function. These results provide an appealing strategy for phase control of TMD catalysts.

Funder

Ministry of Science and ICT, South Korea

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

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