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Efficient hydrogen evolution in transition metal dichalcogenides via a simple one-step hydrazine reaction

机译:通过简单的一步肼反应在过渡金属二卤化物中高效放氢

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摘要

Hydrogen evolution reaction is catalysed efficiently with precious metals, such as platinum; however, transition metal dichalcogenides have recently emerged as a promising class of materials for electrocatalysis, but these materials still have low activity and durability when compared with precious metals. Here we report a simple one-step scalable approach, where MoOx/MoS2 core-shell nanowires and molybdenum disulfide sheets are exposed to dilute aqueous hydrazine at room temperature, which results in marked improvement in electrocatalytic performance. The nanowires exhibit ∼100 mV improvement in overpotential following exposure to dilute hydrazine, while also showing a 10-fold increase in current density and a significant change in Tafel slope. In situ electrical, gate-dependent measurements and spectroscopic investigations reveal that hydrazine acts as an electron dopant in molybdenum disulfide, increasing its conductivity, while also reducing the MoOx core in the core-shell nanowires, which leads to improved electrocatalytic performance.
机译:铂等贵金属可有效地催化析氢反应。然而,过渡金属二卤化物最近已成为一种有前途的电催化材料,但与贵金属相比,这些材料仍具有较低的活性和耐久性。在这里,我们报告了一种简单的一步可扩展方法,其中,MoOx / MoS2核壳纳米线和二硫化钼片在室温下暴露于稀水合肼,这导致电催化性能显着提高。纳米线暴露于稀肼后,其超电势提高了约100 mV,同时电流密度也增加了10倍,Tafel斜率也发生了显着变化。原位电,与门相关的测量和光谱研究表明,肼在二硫化钼中充当电子掺杂剂,增加了其导电性,同时还减少了核-壳纳米线中的MoOx核,从而改善了电催化性能。

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