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Fabrication of MoS2/reduced graphene oxide hybrid as an earth-abundant hydrogen evolution electrocatalyst

机译:MoS2 /还原型氧化石墨烯杂化体作为富地球的析氢电催化剂的制备

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摘要

MoS2/reduced graphene oxide (MoS2/rGO-NP) hybrid is fabricated through one-pot hydrothermal route with mediation of a water-soluble N-methylimidazole pillar[5]arene supramolecule. MoS2 sheets with more exposed active edge site, are well dispersed on the rGO surface. Electrochemical measurements demonstrate that MoS2/rGO-NP hybrid exhibits outstanding electrocatalytic performance for hydrogen evolution reaction with a low Tafel slope of 44.5 mV/dec and significantly enhanced kinetics. Thus, the MoS2/rGO-NP hybrid holds high potential as a promising earth-abundant electrocatalyst for the cost-effective production of hydrogen.
机译:MoS2 /还原氧化石墨烯(MoS2 / rGO-NP)杂化物是通过一锅水热法在水溶性N-甲基咪唑柱[5]芳烃超分子的介导下制备的。具有更多暴露的活动边缘位置的MoS2薄板很好地分散在rGO表面上。电化学测量表明,MoS2 / rGO-NP杂化体对氢气的释放反应具有出色的电催化性能,其Tafel斜率低至44.5 mV / dec,并显着增强了动力学。因此,MoS2 / rGO-NP杂化物作为一种有前途的富地球电催化剂具有很高的潜力,可以经济高效地生产氢气。

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