Tailoring sulfur reactivity in ReS2 via d–p orbital hybridization for efficient hydrogen production
  • Weng, Yinglong
  • Kang, Yingbo
  • Li, Nannan
  • Du, Tingyu
  • Jin, Li
  • ... Lee, Jin Yong
  • 외 2명
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초록

The intrinsic anisotropy and tunable electronic structure of rhenium disulfide (ReS2) make it a compelling platform for electrocatalytic hydrogen evolution, yet its activity is hampered by the imbalanced hydrogen adsorption–desorption kinetics at sulfur active sites. Here, we report a rational orbital-level engineering strategy to unlock the electrocatalytic potential of ReS2 via Co-induced d–p impurity orbital hybridization. Density functional theory calculations reveal that Co-doping introduces localized impurity electronic states and facilitates strong hybridization between Co 3d and S 3p orbitals, establishing a directional charge transfer pathway from S to Co. This interaction depletes the local electron density around surface S atoms, attenuates the S 3p–H 1 s orbital overlap, and lowers the thermodynamic barrier for hydrogen desorption. As a result, the hydrogen adsorption–desorption equilibrium is significantly improved, facilitating rapid turnover and sustained regeneration of sulfur sites. Guided by these theoretical insights, we synthesize a Co-doped ReS2 catalyst (Co2–ReS2, ~5 at.% Co), which exhibits markedly enhanced HER performance, achieving a low overpotential of 98 mV at 10 mA cm−2. More importantly, Co2–ReS2 demonstrates long-term operational stability exceeding 50 h without measurable degradation, underscoring the robustness of the engineered sulfur active sites. This work demonstrates an effective orbital-level engineering strategy for activating chalcogen sites and offers a versatile framework for designing high-performance electrocatalysts for hydrogen production.

키워드

D–p hybridizationElectrocatalysisHydrogen evolutionReS2Water electrolysis
제목
Tailoring sulfur reactivity in ReS2 via d–p orbital hybridization for efficient hydrogen production
저자
Weng, YinglongKang, YingboLi, NannanDu, TingyuJin, LiZhang, JianpingLee, Jin YongHan, Xiaotong
DOI
10.1016/j.cej.2025.167573
발행일
2025-10-15
유형
Article
저널명
Chemical Engineering Journal
522