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Engineering stepped edge surface structures of MoS2 sheet stacks to accelerate the hydrogen evolution reaction

机译:设计MoS2薄板堆叠的阶梯状边缘表面结构以加速氢释放反应

摘要

Two-dimensional molybdenum sulfide is an attractive noble-metal-free electrocatalyst for the hydrogen evolution reaction (HER). Significant efforts have been made to increase the number of exposed edge sites. However, little attention has been paid to devising edge surface structures of MoS2 sheet stacks to promote the HER kinetics. Herein we report the first demonstration of significantly enhanced HER kinetics by controllably fabricating a stepped MoS2 surface structure. Vertical arrays of MoS2 sheets terminated with such a stepped surface structure have proved to be an outstanding HER electrocatalyst with an overpotential of 104 mV at 10 mA cm(-2), an exchange current density of 0.2 mA cm(-2) and high stability. Experimental and theoretical results indicate that the enhanced electrocatalytic activity of the vertical MoS2 arrays is associated with the unique vertically terminated, highly exposed, stepped surface structure with a nearly thermoneutral H-adsorption energy. This work opens a new avenue to designing and developing layered materials for electrochemical energy applications.
机译:二维硫化钼是用于氢气释放反应(HER)的有吸引力的无贵金属电催化剂。已经做出了很大的努力来增加暴露的边缘部位的数量。但是,很少有人关注设计MoS2薄板堆叠的边缘表面结构以促进HER动力学。在这里,我们报告通过可控地制造阶梯状的MoS2表面结构显着增强HER动力学的第一个证明。事实证明,以这种阶梯状表面结构终止的MoS2片的垂直阵列是一种出色的HER电催化剂,在10 mA cm(-2)时的过电势为104 mV,交换电流密度为0.2 mA cm(-2),且稳定性高。实验和理论结果表明,垂直MoS2阵列增强的电催化活性与独特的垂直终止,高度暴露的阶梯状表面结构有关,具有几乎热中性的H吸附能。这项工作为设计和开发用于电化学能源应用的分层材料开辟了一条新途径。

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