首页> 外文期刊>Chemical engineering journal >Ultrathin 2D nanosheet based 3D hierarchical hollow polyhedral CoM/C (M = Ni, Cu, Mn) phosphide nanocages as superior electrocatalysts toward oxygen evolution reaction
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Ultrathin 2D nanosheet based 3D hierarchical hollow polyhedral CoM/C (M = Ni, Cu, Mn) phosphide nanocages as superior electrocatalysts toward oxygen evolution reaction

机译:基于超薄的基于3D分层中空多面体COM / C(M = Ni,Cu,Mn)磷化物纳米作为氧气进化反应的优质电催化剂

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摘要

Metal phosphide materials with unique nanostructures are of great interest for electrocatalysis. Herein, an ion-induction strategy is developed to synthesize a family of carbon incorporated homobimetallic (CoNi/C, CoCu/C, CoMn/C) phosphide electrocatalyst of hierarchical hollow polyhedral nanocages (HHPNCs) composed of ultrathin 2D subunits. The unique morphological structure effectively optimize the surface active sites, accelerate the charge transfer, and thus boost their superior catalytic activity. Density functional theory calculations reveal that not only the homogenously doped secondary metals but also the incorporated carbon effectively regulates the electronic structure and as a result collaboratively lower the kinetic energy barrier for the OER. Electrochemical measurements show high OER efficiency (eta@10 mA cm(-2) = 267, 262, and 283 mV for samples of CoNi/C-, CoMn/C-, and CoCu/C-HHPNC, respectively) and durability in alkaline electrolytes. Especially, the prepared carbon incorporated homobimetallic HHPNCs show very much higher (almost 9 times) mass activity than the particle counterpart.
机译:具有独特纳米结构的金属磷化物材料对于电殖分析具有很大的兴趣。在此,开发了一种离子诱导策略以合成由超薄2D亚基组成的分层中空多面体纳米病症(HHPNC)的均质均质(CONI / C,Cocu / C,COMN / C)磷化催化剂的碳含有掺入的均质(Cocu / C,CoMN / C)。独特的形态学结构有效地优化了表面活性位点,加速电荷转移,从而提高其优异的催化活性。密度函数理论计算揭示不仅是均匀掺杂的二级金属,而且还有掺入的碳有效地调节了电子结构,并因此协作地降低了Oer的动能屏障。电化学测量分别显示出高oer效率(Eta @ 10 mA cm(-2)= 267,262和283mV,用于分别为CONI / C-,COMN / C-HHPNC的样品和碱性的耐久性电解质。特别是,制备的碳掺入均质HHPNC的均质显示得比颗粒对应物高出(近9次)质量活性。

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