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CZTS Decorated on Graphene Oxide as an Efficient Electrocatalystfor High-Performance Hydrogen Evolution Reaction

机译:氧化石墨烯修饰的CZTS作为高效电催化剂高性能析氢反应的制备

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摘要

Cu2ZnSnS4 (CZTS) was synthesized by the sonochemical method using 2-methoxyethanol as the solvent and subsequently decorated onto graphene oxide (GO synthesized by the modified Hummers’ method) using two different approaches such as in situ growth and ex situ synthesis followed by deposition. Preliminary characterizations indicated that the synthesized CZTS belongs to the kesterite structure with a sphere-like morphology. The in situ-synthesized CZTS/GO (I-CZTS/GO) composite is used as an efficient electrocatalyst for hydrogen evolution reaction (HER) which revealed superior electrocatalytic activity with a reduced overpotential (39.3 mV at 2 mA cm–2), Tafel slope (70 mV dec–1), a larger exchange current density of 908 mA cm–2, and charge transfer resistance (5 Ω), significantly different from pure CZTS. Besides, the I-CZTS/GO composite exhibits highest HER performance with high current stability of which shows no noticeable degradation after i–t amperometry. The catalytic activity demonstrates that the I-CZTS/GO composite could be a promising electrocatalyst in hydrogen production from their cooperative interactions.
机译:Cu2-ZnSnS4(CZTS)是使用2-甲氧基乙醇作为溶剂通过声化学方法合成的,然后使用两种不同的方法(例如原位生长和异位合成然后沉积)装饰在氧化石墨烯上(通过改良的Hummers方法合成的GO)。初步表征表明,合成的CZTS属于具有球状形态的硅藻土结构。原位合成的CZTS / GO(I-CZTS / GO)复合材料用作氢气释放反应(HER)的有效电催化剂,显示出优异的电催化活性,并具有降低的过电势(在2 mA cm ),Tafel斜率(70 mV dec –1 ),较大的交流电流密度908 mA cm –2 和电荷转移电阻(5Ω) ,与纯CZTS明显不同。此外,I-CZTS / GO复合材料表现出最高的HER性能和高电流稳定性,在i–t电流分析法下没有显示出明显的劣化。催化活性表明,I-CZTS / GO复合物可以通过它们的协同作用在氢生产中成为有希望的电催化剂。

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