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首页> 外文期刊>Electrochimica Acta >High efficiency oxygen evolution reaction enabled by 3D network composed of nitrogen-doped graphitic carbon-coated metal/metal oxide heterojunctions
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High efficiency oxygen evolution reaction enabled by 3D network composed of nitrogen-doped graphitic carbon-coated metal/metal oxide heterojunctions

机译:3D网络由氮掺杂石墨碳涂层金属/金属氧化物异质结组成的高效氧气进化反应

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The ability to develop low-cost highly efficient electrocatalyst for oxygen evolution reaction (OER) is key to the overall water splitting device that represents a viable and promising source of alternative energy. Herein, we crafted three-dimensional (3D) network comprising nitrogen-doped graphitic carbon-coated heterojunctions (denoted NC-Ni0.36Fe0.64/MnOx) via one-step calcination of hybrid precursors containing ternary Prussian blue analogues and polymers. The NC-Ni0.36Fe0.64/MnOx nanocomposites were then exploited as catalysts for OER, displaying exceptional performance with a small overpotential of 300 mV to reach 10 mA cm(-2), a low Tafel slope of 43 mV/dec and an outstanding stability without deactivation over a 10-h OER. Notably, compared to commercial RuO2 catalysts, NCeNi0.36Fe0.64/MnOx catalysts demonstrated much lower overpotential and Tafel slope. The excellent OER performance can be attributed to the presence of high-valence oxidized metal species (Ni2+, Fe2+ and Mn2+) at the hetero-structured interface as well as pyridinic N-doped carbon species on highly conductive graphitic carbon network, thus greatly facilitating the electron-withdrawing from OH- and thus charge transfer during OER. This simple yet effective strategy may open new possibilities for creating a wide range of low-cost, high-efficiency, non-precious transition metal OER catalysts for the overall water splitting. (C) 2018 Elsevier Ltd. All rights reserved.
机译:开发用于氧气进化反应的低成本高效电催化剂的能力(OER)是整个水分裂装置的关键,其代表可行性和有前途的替代能源来源。在此,我们通过含有三元普鲁士蓝色类似物和聚合物的杂交前体的一步煅烧制成了包含氮掺杂的石墨碳涂覆的异质结(表示NC-Ni0.36Fe0.64 / mnox)的三维(3D)网络。然后将NC-Ni0.36Fe0.64 / mnox纳米复合材料作为oer的催化剂进行利用,显示出具有300 mV的小型过电位的卓越性能,以达到10 mA cm(-2),43 mV / DEC的低Tafel斜率和出色的稳定性而不通过10-H Oer取消激活。值得注意的是,与商业ruo2催化剂相比,Nceni0.36Fe0.64 / mnox催化剂展示了大量的过电位和Tafel斜率。优异的oer性能可归因于在杂结构界面处存在高价氧化金属物质(Ni2 +,Fe2 +和Mn2 +)以及在高导电石墨碳网络上的吡啶基N-掺杂碳物质,从而大大促进了从OH-中取出ob-并因此在oer期间的电荷转移。这种简单但有效的策略可能开辟了为整个水分裂产生广泛的低成本,高效率,非宝贵过渡金属催化剂的新可能性。 (c)2018年elestvier有限公司保留所有权利。

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