4.8 Article

A modulated electronic state strategy designed to integrate active HER and OER components as hybrid heterostructures for efficient overall water splitting

期刊

APPLIED CATALYSIS B-ENVIRONMENTAL
卷 260, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.apcatb.2019.118197

关键词

Bifunctional electrocatalysts; N and S co-doped graphitic carbon; Electronic structure; Overall water splitting

资金

  1. National Natural Science Foundation of China [51871097]
  2. National Natural Science Foundation of Hunan, China [2019JJ40033]
  3. Research Foundation of Education Bureau of Guizhou Province, China [Guizhou [2015]402]
  4. First-class Discipline Construction Project of Qiannan Normal University for Nationalities, China [QNSY2018XK005]
  5. Qiannan Municipal Science and Technology Project, China [Qiannan KH [2018]35]
  6. Major Special Foundation of Research and Innovation of Qiannan Normal University for Nationalities, China [QNSY2018XK005]

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Herein, we report a rational design of one-dimension (1D) porous hybrid heterostructures with the active HER (Mo2C) and OER (Co4S3) embedded N and S co-doped carbon (Co4S3/Mo-2 C-N SC) for the effective overall water splitting. Spectroscopic characterizations reveals that modulated electronic state behaviors are generated by the strong chemical couplings at the nanointerface which triggers the charge from Co2+ to Mo4+/Mo6+ through the interfacial Mo-S-Co bond, resulting in producing the considerable amounts of the active sites (i.e., Co3+, Mo2+, and Mo3+) for the HER and OER in the hybrid heterostructures. Interestingly, Co4S3/Mo-2 C-N SC shows pronounced synergistic effects in electrocatalytic activity for the HER and OER. When Co4S3/Mo-2 C-N SC is used as both anode and cathode for overall water splitting, a low cell voltage of 1.62 eV is generated at 10 mA cm(-2). The interesting work highlights the significance of optimization electronic structure based on transition metal-based bifunctional electrocatalysts for the HER and OER.

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