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Iron-doped nickle cobalt ternary phosphide hyperbranched hierarchical arrays for efficient overall water splitting

机译:用于高效的整体水分裂的铁掺杂镍钴三元磷化物超支分层阵列

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摘要

Transition metal phosphide as an excellent sustainable hydrogen fuel production catalyst can effectively restrain the thermodynamic requirements of electrolysis water reaction. Here, we report a novel Fe-doped NiCoP hyperbranched hierarchical arrays grown on nickel foam (referred as NC1-xFxP HHAs/NF) prepared by a facile hydrothermal method followed by a phosphorization treatment. Compared to traditional nanosheet arrays, the secondary one-dimensional nanowire arrays were grown on primary two-dimensional NC1-xFxP nanosheets arrays supported on the nickel foam to maximum exposed catalytic active sites and provide a large electrolyte contact area and accelerate electrolyte transport, thus greatly improving catalytic activity. Benefit from the synergy of modified electronic structure induced by the Fe-doping and special hyperbranched hierarchical architecture, the optimal NC0.9F0.1P HHAs/NF electrocatalyst show an over potential of 122.5 and 269 mV for hydrogen evolution reaction (HER) and oxygen evolution reaction (OER) at 10 mA cm(-2), under 1 M KOH aqueous electrolyte. The material system operates at 1.57 V to reach 10 mA cm(-2) in two-electrode measurements. This permits new design principles for highly-efficient multicomponent metal phosphides electrocatalysts with special hierarchical architecture for water splitting. (C) 2020 Elsevier Ltd. All rights reserved.
机译:过渡金属磷化物作为优异的可持续氢燃料生产催化剂可以有效地抑制电解水反应的热力学要求。在这里,我们报告了在镍泡沫上生长的新型Fe掺杂的Nicop超支化等级阵列(参考NC1-XFXP HHAS / NF),然后通过容易水热法制备,然后呈磷光化处理。与传统的纳米片阵列相比,二次一维纳米线阵列在镍泡沫上支撑在镍泡沫上的初级二维NC1-XFXP纳米阵列上,以提供大的电解质接触面积并加速电解质运输,从而大大改善催化活性。从Fe-掺杂和特殊的超支分层架构引起的改进电子结构的协同作用中受益,最佳NC0.9F0.1P HHAS / NF电催化剂显示出122.5和269mV的电位,用于氢进化反应(她)和氧气进化在10mA cm(-2)的反应(oer),在1 m koh含水电解质下。材料系统在1.57V下运行,在两个电极测量中达到10 mA cm(-2)。这允许新的设计原理用于高效的多组分金属磷化盐电催化剂,具有用于水分裂的特殊等级架构。 (c)2020 elestvier有限公司保留所有权利。

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