4.8 Article

Electronic Structure Reconfiguration toward Pyrite NiS2 via Engineered Heteroatom Defect Boosting Overall Water Splitting

期刊

ACS NANO
卷 11, 期 11, 页码 11574-11583

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsnano.7b06501

关键词

electronic structure; defect engineering; X-ray absorption spectroscopy; metallic characteristics; water splitting

资金

  1. MOST [2017YFA0303500, 2014CB848900]
  2. NSFC [U1532112, 11375198, 11574280, 11605201, 21706248]
  3. CAS Key Research Program of Frontier Sciences [QYZDB-SSW-SLH018]
  4. CAS Iterdisciplinary Innovation Team

向作者/读者索取更多资源

Developing highly active and low-cost heterogeneous catalysts toward overall electrochemical water splitting is extremely desirable but still a challenge. Herein, we report pyrite NiS2 nanosheets doped with vanadium heteroatoms as bifunctional electrode materials for both hydrogen- and oxygen-evolution reaction (HER and OER). Notably, the electronic structure reconfiguration of pyrite NiS2 is observed from typical semiconductive characteristics to metallic characteristics by engineering vanadium (V) displacement defect, which is confirmed by both experimental temperature-dependent resistivity and theoretical density functional theory calculations. Furthermore, elaborate X-ray absorption spectroscopy measurements reveal that electronic structure reconfiguration of NiS2 is rooted in electron transfer from doped V to Ni sites, consequently enabling Ni sites to gain more electrons. The metallic V-doped NiS2 nanosheets exhibit extraordinary electrocatalytic performance with overpotentials of about 290 mV for OER and about 110 mV for HER at 10 mA cm(-2) with long-term stability in 1 M KOH solutions, representing one of the best non-noble-metal bifunctional electrocatalysts to date. This work provides insights into electronic structure engineering from well-designed atomic defect metal sulfide.

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