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首页> 外文期刊>Journal of industrial and engineering chemistry >Three-dimensional porous metal-nitrogen doped carbon nanostructure as a superior non-precious electrocatalyst in oxygen reduction reaction
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Three-dimensional porous metal-nitrogen doped carbon nanostructure as a superior non-precious electrocatalyst in oxygen reduction reaction

机译:三维多孔金属氮掺杂碳纳米结构在氧还原反应中是一种优异的非贵金属电催化剂

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摘要

We report the porous transition metal-nitrogen doped carbon nanostructures as cathode catalysts using a well-stacked arrangement of template materials in the presence of polyvinylpyrrolidone as nitrogen and carbon sources and metal-phthalocyanine as metal and nitrogen sources. The as-prepared nanostructures show high specific surface areas (105.73-228.13 m(2) g(-1)), porous structure, and doped metal and nitrogen species (pyridinic-N, pyrrolic-N, and graphitic-N) into carbon structures. In particular, the porous Fe-N-doped carbon nanostructure exhibits excellent ORR electrocatalytic properties in alkaline electrolyte; i.e., electron transfer number close to 4, high half-wave potential (0.81 V), improved electrochemical stability (a slight decrease of similar to 31 mV in the half-wave potential after the stability test), and methanol tolerance. (C) 2016 The Korean Society of Industrial and Engineering Chemistry. Published by Elsevier B.V. All rights reserved.
机译:我们报告了多孔过渡金属-氮掺杂的碳纳米结构作为阴极催化剂,在聚乙烯吡咯烷酮作为氮和碳源以及金属-酞菁作为金属和氮源的情况下,使用模板材料的良好堆叠排列。所制备的纳米结构显示出高比表面积(105.73-228.13 m(2)g(-1)),多孔结构以及向碳中掺杂的金属和氮物种(吡啶-N,吡咯-N和石墨-N)结构。尤其是,掺杂Fe-N的多孔碳纳米结构在碱性电解质中表现出优异的ORR电催化性能。即,电子转移数接近4,高半波电势(0.81 V),改善的电化学稳定性(在稳定性测试后,半波电势略有下降,类似于31 mV),并且具有甲醇耐受性。 (C)2016韩国工业和工程化学学会。由Elsevier B.V.发布。保留所有权利。

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