Transition Metal-Doped Mo-Vacancy Defects at MoS2 Basal Plane for Enhanced Hydrogen Evolution Catalysis

Transition Metal‑Doped Mo‑Vacancy Defects at MoS2 Basal Plane for Enhanced Hydrogen Evolution Catalysis
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초록

In this work, we explored transition metal-doped Mo-vacancy defects in MoS2 for hydrogen evolution catalysis using DFT calculations. We found that transition metals (V, Cr, Mn, Fe, Co, Ni) preferentially incorporate at Mo-vacancy sites, creating electronically modified regions with enhanced catalytic properties. Early transition metals (V, Cr, Mn) establish near-optimal hydrogen binding energies (0.18-0.23 eV) at adjacent sulfur sites, dramatically improving the otherwise inert basal plane. Electronic structure analysis revealed a direct correlation between Bader charge distribution and hydrogen binding strength, providing mechanistic insights. Additionally, our findings suggest potential bifunctional catalysis in alkaline media, where neighboring sites perform complementary roles in water dissociation and hydrogen adsorption. These results offer new strategies for designing efficient MoS2-based electrocatalysts through strategic defect engineering.

키워드

Hydrogen evolution reactionMolybdenum disulfideTransition metal dopingDensity functional theoryElectrocatalysisNANOSTRUCTURED MOS2ELECTROCATALYST
제목
Transition Metal-Doped Mo-Vacancy Defects at MoS2 Basal Plane for Enhanced Hydrogen Evolution Catalysis
제목 (타언어)
Transition Metal‑Doped Mo‑Vacancy Defects at MoS2 Basal Plane for Enhanced Hydrogen Evolution Catalysis
저자
Kim, DonghwiLee, SangheonLim, Hyung-Kyu
DOI
10.1007/s11814-025-00515-z
발행일
2025-07-19
유형
Article
저널명
Korean Journal of Chemical Engineering
42
14
페이지
3387 ~ 3393