Etching engineering on controllable synthesis of etched N-doped hierarchical porous carbon toward efficient oxygen reduction reaction in zinceair batteries

Etching engineering on controllable synthesis of etched N-doped hierarchical porous carbon toward efficient oxygen reduction reaction in zinceair batteries
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刻蚀工程中可控合成刻蚀氮掺杂分级多孔碳以实现锌空气电池中高效氧还原反应

DOI:
10.1016/j.mtener.2021.100670
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发表时间:
2021-02-27
影响因子:
9.3
通讯作者:
Xu, W.
Xu, W.
中科院分区:
材料科学3区
文献类型:
--
作者:
Chen, L.;Chen, Y.;Xu, W.

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Low-cost, high-performance oxygen reduction reaction (ORR) catalysts greatly determine the practical application of advanced energy storage and conversion systems, including fuel cells and metaleair batteries. Precise design and controllable preparation of cutting-edge ORR catalysts demonstrate much meaningful to their electrochemical performance. Herein, etching engineering is applied on polypyrrolederived carbon to controllably prepare etched N-doped hierarchical porous carbon (ENHPC-t, t means etching time) by using ammonia as an etching source. By systematical characterization and analysis, we find altering etching time exerts a profound effect on the morphology, structure, and composition of ENHPCet. In spite of relatively lower defect density than the counterparts, the obtained ENHPC-5 with unique hierarchical porous structure, much larger specific surface area, and more optimized N configurations, display significantly improved ORR performance in both basic and acid media. When constructed as a cathode catalyst for zinceair batteries, it also presents competitive performance to commercial Pt/C catalysts. Undoubtedly, our adopted etching strategy provides good guidance on a controllable synthesis of low-price but high-performance carbon-based ORR catalysts. (C) 2021 Elsevier Ltd. All rights reserved.