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共聚热解法将 S、N 共掺杂碳负载 Fe 孤立单原子用于高效氧还原反应。

Fe Isolated Single Atoms on S, N Codoped Carbon by Copolymer Pyrolysis Strategy for Highly Efficient Oxygen Reduction Reaction.

机构信息

Department of Chemistry, Tsinghua University, Beijing, 100084, China.

School of Physical Sciences, University of Chinese Academy of Sciences, Beijing, 100190, China.

出版信息

Adv Mater. 2018 Jun;30(25):e1800588. doi: 10.1002/adma.201800588. Epub 2018 May 4.

Abstract

Heteroatom-doped Fe-NC catalyst has emerged as one of the most promising candidates to replace noble metal-based catalysts for highly efficient oxygen reduction reaction (ORR). However, delicate controls over their structure parameters to optimize the catalytic efficiency and molecular-level understandings of the catalytic mechanism are still challenging. Herein, a novel pyrrole-thiophene copolymer pyrolysis strategy to synthesize Fe-isolated single atoms on sulfur and nitrogen-codoped carbon (Fe-ISA/SNC) with controllable S, N doping is rationally designed. The catalytic efficiency of Fe-ISA/SNC shows a volcano-type curve with the increase of sulfur doping. The optimized Fe-ISA/SNC exhibits a half-wave potential of 0.896 V (vs reversible hydrogen electrode (RHE)), which is more positive than those of Fe-isolated single atoms on nitrogen codoped carbon (Fe-ISA/NC, 0.839 V), commercial Pt/C (0.841 V), and most reported nonprecious metal catalysts. Fe-ISA/SNC is methanol tolerable and shows negligible activity decay in alkaline condition during 15 000 voltage cycles. X-ray absorption fine structure analysis and density functional theory calculations reveal that the incorporated sulfur engineers the charges on N atoms surrounding the Fe reactive center. The enriched charge facilitates the rate-limiting reductive release of OH* and therefore improved the overall ORR efficiency.

摘要

杂原子掺杂的 Fe-NC 催化剂作为最有前途的贵金属基催化剂替代品之一,在高效氧气还原反应(ORR)中得到了广泛的应用。然而,要精确控制其结构参数以优化催化效率,并在分子水平上理解催化机制,仍然具有挑战性。在此,我们合理设计了一种新型的吡咯-噻吩共聚物热解策略,用于合成具有可控 S、N 掺杂的 Fe 孤立单原子负载在 S、N 共掺杂碳(Fe-ISA/SNC)上。Fe-ISA/SNC 的催化效率随着硫掺杂量的增加呈现出火山型曲线。优化后的 Fe-ISA/SNC 的半波电位为 0.896 V(相对于可逆氢电极(RHE)),比氮掺杂碳负载的 Fe 孤立单原子(Fe-ISA/NC,0.839 V)、商业 Pt/C(0.841 V)以及大多数报道的非贵金属催化剂更为正。Fe-ISA/SNC 对甲醇具有耐受性,在 15 000 个电压循环的碱性条件下,活性衰减可忽略不计。X 射线吸收精细结构分析和密度泛函理论计算表明,掺入的硫改变了 Fe 活性中心周围 N 原子的电荷分布。富集的电荷有利于限速还原释放 OH*,从而提高了整体 ORR 效率。

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