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首页> 外文期刊>RSC Advances >The self-template synthesis of highly efficient hollow structure Fe/N/C electrocatalysts with Fe-N coordination for the oxygen reduction reaction
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The self-template synthesis of highly efficient hollow structure Fe/N/C electrocatalysts with Fe-N coordination for the oxygen reduction reaction

机译:高效中空结构Fe / N / C电催化剂的自我模板合成用Fe-N配位进行氧还原反应

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摘要

The exploration of highly efficient catalysts to replace noble metal platinum for the oxygen reduction reaction, on which M/N/C catalysts have shed brilliant light, is greatly significant but challenging. This paper presents a strategy for synthesizing highly efficient and stabilized hollow structure Fe/N/C catalysts with iron and nitrogen doped into the carbon layer by the self-template method. The prepared Fe/N/C catalysts with NaCl protection during pyrolysis are characterized by a unique hollow structure, porous morphology and Fe-N coordination as the active sites, all of which significantly endow the materials with excellent properties towards the ORR, including high electrical conductivity, long-term durability and outstanding capacity for methanol tolerance. We employed X-ray absorption fine structure spectrometry to investigate the chemical state and coordination environment of the central iron atoms of the Fe/N/C catalysts, which also clarified the promoting effect of the NaCl protection for Fe-N coordination during pyrolysis. In particular, the Fe/N/C catalysts exhibit positive half-wave potentials (0.84 V vs. RHE) and Tafel slope comparable to 20% commercial Pt/C, possessing four-electron transfer pathway as well as excellent long-term stability and methanol tolerance in alkaline medium.
机译:高效催化剂的探索替代贵金属铂的氧还原反应,其中M / N / C催化剂具有卓越的光,是大大显着但具有挑战性的。本文介绍了通过自动模板法将高效和稳定的中空结构Fe / N / C催化剂合成高效稳定的空心结构Fe / N / C催化剂。通过自我模板方法,掺杂到碳层中的氧化物。热解期间具有NaCl保护的制备的Fe / N / C催化剂的特征在于独特的中空结构,多孔形态和Fe-n作为活性位点,所有这些都是显着赋予钻头钻头具有优异性能的材料,包括高电气电导率,长期耐久性和甲醇耐受能力的突出能力。我们采用X射线吸收细结构光谱法研究Fe / N / C催化剂的中央铁原子的化学状态和配位环境,这也阐明了在热解期间Fe-N协调的NaCl保护的促进作用。特别地,Fe / N / C催化剂表现出正半波电位(0.84V与RHE)和TAFEL斜率,与20%的商业Pt / c相当,具有四电子转移途径以及优异的长期稳定性和碱性培养基中的甲醇耐受性。

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  • 来源
    《RSC Advances 》 |2018年第43期| 共8页
  • 作者单位

    Capital Normal Univ Dept Chem Beijing 100048 Peoples R China;

    Capital Normal Univ Dept Chem Beijing 100048 Peoples R China;

    Capital Normal Univ Dept Chem Beijing 100048 Peoples R China;

    Capital Normal Univ Dept Chem Beijing 100048 Peoples R China;

    Capital Normal Univ Dept Chem Beijing 100048 Peoples R China;

    Capital Normal Univ Dept Chem Beijing 100048 Peoples R China;

    Capital Normal Univ Dept Chem Beijing 100048 Peoples R China;

    Chinese Acad Sci Inst High Energy Phys Beijing Synchrotron Radiat Facil Beijing 100049 Peoples R China;

    Capital Normal Univ Dept Chem Beijing 100048 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学 ;
  • 关键词

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