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Efficient Mechanochemical Preparation of Graphene-Like Molybdenum Disulfide and Graphene-Based Composite Electrocatalysts for Hydrogen Evolution Reaction

机译:用于氢气进化反应的石墨烯样钼二硫化钼和石墨烯复合电催化剂的高效机械化学制备

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摘要

Graphene-like MoS2 and graphene-based (gMoS(2)/Gr, Gr@gMoS(2), and gMoS(2)@Gr) nanocomposites, which are able to operate as electrocatalysts of water splitting with hydrogen evolution, were prepared by solventless mechanochemical delamination of bulk molybdenum disulfide and graphite. It was shown that the sequence of nanostructuring significantly affects both the morphology and the electrocatalytic properties of the prepared nanocomposites. The material prepared by sequential mechanochemical treatment of molybdenum disulfide and graphite-gMoS(2)@Gr-is characterized by significant delamination of both components with nearly complete disruption of the layer ordering, few-layer MoS2 nanoparticles with higher degree of defectiveness, the graphene component with sufficiently large ordered regions, due to which it exhibited the best electrocatalytic performance with the Tafel slope of 60 mV/dec and the overvoltage of 195 mV at the current density of 10 mA/cm(2) (or specific current 17 A/g). It was shown that gMoS(2)@Gr nanocomposite as HER electrocatalyst can be used as an effective counter electrode in photoelectrochemical cells, providing the photocurrent of 1 mA/cm(2) at the voltage of 365 mV. As a whole, the presented data show that gMoS(2)@Gr nanocomposite is an efficient HER electrocatalyst attractive due to the simplicity and cheapness of its preparation provided by the mechanochemical approach.
机译:基于石墨烯的MOS2和基于GMOS(2)/ GR,GR @ GMOS(2),以及GMOS(2)@gr)纳米复合材料,其能够作为与氢进化的水分裂的电催化剂操作。散装钼二硫化物和石墨的无能机械化学分层。结果表明,纳米结构序列显着影响制备纳米复合材料的形态和电催化性质。通过连续的二硫化钼和石墨 - 转基因(2)@ GR通过顺序机械化学处理制备的材料,其特征在于,两种部件的显着分层具有几乎完全破坏层排序,几层MOS2纳米颗粒具有较高程度的缺陷性,石墨烯具有足够大的有序区域的部件,其它具有60 mV / DEC的Tafel斜率和195mV的最佳电压,电流密度为10 mA / cm(2)(或特定电流17a / G)。结果表明,作为其电催化剂的转基因菌(2)@gr纳米复合材料可用作光电化学电池中的有效对电极,在365mV的电压下提供1mA / cm(2)的光电流。作为一个整体,所呈现的数据显示,由于其制备的简单性和廉价的制备提供了由机械化学方法提供的简单性和廉价的廉价,GMOS(2)@gr纳米复合材料是一种有效的催化剂。

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