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首页> 外文期刊>ChemSusChem >Boosting Alkaline Hydrogen Evolution Activity with Ni-Doped MoS2/Reduced Graphene Oxide Hybrid Aerogel
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Boosting Alkaline Hydrogen Evolution Activity with Ni-Doped MoS2/Reduced Graphene Oxide Hybrid Aerogel

机译:用Ni掺杂MOS2 /氧化石墨烯杂交气凝胶促进碱性氢进化活性

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摘要

Highly active, durable, and cost-effective non-precious-metal-based electrocatalysts are urgently needed to improve the sluggish hydrogen evolution reaction (HER) in an alkaline environment. Herein, a lyophilization/thermolysis method is successfully applied to prepare Ni-doped MoS2 (Ni-MoS2)/reduced graphene oxide (RGO) hybrid aerogels. The MoS2 aerogel possesses a higher density of exposed active sites than its corresponding bulk material. Inheriting from GO its abundant functional groups during pyrolysis, the RGO aerogel can uniformly disperse MoS2 and simultaneously maintain excellent conductivity. The incorporation of Ni atoms can accelerate the cleavage of the HO-H bond and enhance the adsorption and desorption of intermediate OH-. Owing to the synergistic effect of the compositional and structural advantages of aerogels, the Ni-MoS2/RGO hybrid aerogel delivers highly promoted HER kinetics in alkaline media. As a result, an optimal eta(10) (overpotential at 10 mA cm(-2)) of 168 mV in 1 M KOH is obtained, which is superior to the non-doped MoS2/RGO hybrid aerogel (225 mV) and MoS2 aerogel (263 mV), letting alone bulk MoS2 (448 mV). Moreover, the eta(60) (overpotential at 60 mA cm(-2)) is maintained at 262 mV after chronopotentiometry tests at a constant current density of 10 mA cm(-2) for 24 h, indicating an exceptionally stability of the HER catalyst.
机译:迫切需要高度活跃,耐用,经济高效的非珍贵金属的电催化剂,以改善碱性环境中的缓慢氢气进化反应(她)。在此,成功地应用了冻干/热解方法以制备Ni掺杂的MOS2(Ni-MOS2)/还原氧化石墨烯(RGO)杂交气凝胶。 MOS2气凝胶具有比其相应的散装材料更高的暴露活性位点的密度。在热解期间继承从其丰富的官能团,RGO气凝胶可以均匀地分散MOS2并同时保持优异的导电性。 Ni原子的掺入可以加速HO-H键的切割,并增强中间体OH-的吸附和解吸。由于Aerogels的组成和结构优势的协同效应,Ni-MOS2 / RGO混合气凝胶在碱性介质中提供高度促进了她的动力学。结果,获得了1M KOH的168mV的最佳ETA(10)(10 mA cm(-2)),其优于非掺杂的MOS2 / RGO混合气凝胶(225mV)和MOS2气凝胶(263 MV),让散装MOS2(448 mV)。此外,在262mV下在262mV以10 mA cm(-2)的恒定电流密度为24小时后,将ETa(60)(60 mA cm(-2))保持在262mV,表明她的异常稳定性催化剂。

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