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Engineering Phase Stability of Semimetallic MoS2Monolayers for Sustainable Electrocatalytic Hydrogen Production

  • Kunkun Nie
  • , Xiaoyan Qu
  • , Dongwei Gao
  • , Binjie Li
  • , Yanling Yuan
  • , Qi Liu
  • , Xinghua Li
  • , Shaokun Chong
  • , Zhengqing Liu
  • Northwestern Polytechnical University Xian
  • Frontier Institute of Science and Technology
  • Northwest University China

科研成果: 期刊稿件文章同行评审

31 引用 (Scopus)

摘要

1T′-phase MoS2possesses excellent electrocatalytic performance, but due to the instability of the thermodynamic metastable phase, its actual electrocatalytic effect is seriously limited. Here, we report a wet-chemical synthesis strategy for constructing rGO/1T′-MoS2/CeO2heterostructures to improve the phase stability of metastable 1T′ phase MoS2monolayers. Importantly, the rGO/1T′-MoS2/CeO2heterostructure exhibits excellent electrocatalytic hydrogen evolution reaction (HER) performance, which is much better than the 1T′-MoS2monolayers. The synergistic effects between CeO2nanoparticles (NPs) and 1T′-MoS2monolayers were systematically investigated. 1T′-MoS2monolayers combined with the cocatalyst of CeO2NPs can produce lattice strain and distortion on 1T′-MoS2monolayers, which can tune the energy band structure, charge transfer, and energy barriers of hydrogen atom adsorption (ΔEH), leading to promotion of the phase activity and stability of 1T′-MoS2monolayers for hydrogen production. Our work offers a feasible method for the preparation of efficient HER electrocatalysts based on the engineering phase stability of metastable materials.

源语言英语
页(从-至)19847-19856
页数10
期刊ACS Applied Materials and Interfaces
14
17
DOI
出版状态已出版 - 4 5月 2022

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