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用于高效锌空气电池的集成N-Co/碳纳米纤维阴极

Integrated N-Co/Carbon Nanofiber Cathode for Highly Efficient Zinc-Air Batteries.

作者信息

Rao Peng, Cui Peng, Wei Zengxi, Wang Maosen, Ma Jianmin, Wang Yun, Zhao Xinsheng

机构信息

School of Mechanical Engineering , Jiangsu University , Zhenjiang 212013 , P. R. China.

School of Physics and Electronic Engineering , Jiangsu Normal University , Xuzhou 221116 , P. R. China.

出版信息

ACS Appl Mater Interfaces. 2019 Aug 21;11(33):29708-29717. doi: 10.1021/acsami.9b04648. Epub 2019 Aug 7.

Abstract

In order to reduce the charge-transfer resistance, ohmic resistance, and ionic and electronic resistances arising from the polymer binder, designing and constructing self-standing and binder-free porous electrodes are very significant for energy storage and conversion devices. Herein, self-standing and binder-free porous N-Co carbon nanofiber (N-Co/CNF) cathodes are prepared for zinc-air batteries (ZABs) by an in situ electrospinning/plasma-etching method. The morphology and activity of the prepared electrodes are investigated by several characterization techniques. The prepared specimens exhibit a multilayered CNF structure, and a new CoN compound is produced after plasma-etching treatment. The N-Co/CNF-300-10 cathode demonstrates excellent electrocatalytic performance toward oxygen reduction reaction, with an onset potential and a half-wave potential of 0.995 and 0.853 V (vs reversible hydrogen electrode), respectively, which is comparable to that of 20% Pt/C. The N-Co/CNF-300-10 cathode acting as a self-standing electrode for ZABs exhibits a maximum discharge power density as high as 229 mW cm and a specific capacity of 659.6 mA h g, which are much higher than those of the commercial catalysts, benefiting from the self-standing porous structure, N-doping, and more defects and active sites induced by plasma-etching. It provides an effective way to construct a self-standing porous electrode with controllable compositions for rechargeable metal-air batteries.

摘要

为了降低由聚合物粘合剂产生的电荷转移电阻、欧姆电阻以及离子和电子电阻,设计和构建自立式无粘合剂多孔电极对于储能和转换装置具有重要意义。在此,通过原位静电纺丝/等离子体蚀刻法制备了用于锌空气电池(ZAB)的自立式无粘合剂多孔N-Co碳纳米纤维(N-Co/CNF)阴极。采用多种表征技术研究了制备电极的形貌和活性。制备的样品呈现多层CNF结构,等离子体蚀刻处理后生成了一种新的CoN化合物。N-Co/CNF-300-10阴极对氧还原反应表现出优异的电催化性能,起始电位和半波电位分别为0.995和0.853 V(相对于可逆氢电极),与20% Pt/C相当。作为ZAB自立式电极的N-Co/CNF-300-10阴极表现出高达229 mW cm的最大放电功率密度和659.6 mA h g的比容量,远高于商业催化剂,这得益于自立式多孔结构、N掺杂以及等离子体蚀刻诱导的更多缺陷和活性位点。它为构建用于可充电金属空气电池的具有可控组成的自立式多孔电极提供了一种有效方法。

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