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Mechanical, electronic and catalytic properties of 2H-1T' MoS 2 heterointerfaces.

Xiangru HuangYuan ChangShi QiuHongsheng LiuVitali ShymanskiJunfeng Gao
Published in: Physical chemistry chemical physics : PCCP (2022)
Using first-principles calculations, we comprehensively explored the influence of 2H-1T' heterointerfaces in molybdenum disulfide (MoS 2 ) on the mechanical, electronic and catalytic properties of MoS 2 . The S-orientated interfaces, including interfaces with interstitial S or S vacancies, were adopted as samples. All the heterostructures show a smaller yield stress than 2H and 1T' MoS 2 , and fractures always occur at the interface. The heterostructures are either metallic or half-metallic. Some of the heterointerfaces show great catalytic ability for the hydrogen evolution reaction (HER). In particular, the Gibbs free energy of H adsorption is as low as -0.028 eV for the S-LU-sint structure. Moreover, a small strain of 4% can improve the HER catalytic activity for several heterostructures. Our results show that 2H-1T' MoS 2 heterointerfaces are potential catalysts for the HER.
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