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MoS2 Coexisting in 1T and 2H Phases Synthesized by Common Hydrothermal Method for Hydrogen Evolution Reaction

机译:普通水热法合成1T和2H相共存的MoS2

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摘要

Molybdenum disulfide has been one of the most studied hydrogen evolution catalyst materials in recent years, but its disadvantages, such as poor conductivity, hinder its further development. Here, we employ the common hydrothermal method, followed by an additional solvothermal method to construct an uncommon molybdenum disulfide with two crystal forms of 1T and 2H to improve catalytic properties. The low overpotential (180 mV) and small Tafel slope (88 mV/dec) all indicated that molybdenum disulfide had favorable catalytic performance for hydrogen evolution. Further conjunctions revealed that the improvement of performance was probably related to the structural changes brought about by the 1T phase and the resulting sulfur vacancies, which could be used as a reference for the further application of MoS2.
机译:二硫化钼是近年来研究最多的制氢催化剂材料之一,但其缺点,如导电性差,阻碍了其进一步发展。在这里,我们采用普通的水热法,然后采用附加的溶剂热法,以1T和2H两种晶型构建不常见的二硫化钼,以提高催化性能。低的超电势(180 mV)和小的Tafel斜率(88 mV / dec)都表明二硫化钼对氢的释放具有良好的催化性能。进一步的联系表明,性能的提高可能与1T相带来的结构变化以及由此产生的硫空位有关,可以作为进一步应用MoS2的参考。

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