聚吡咯
流动电池
溴
锌
碳化
电极
材料科学
氧化还原
自放电
储能
化学工程
电池(电)
无机化学
电流密度
化学
电化学
复合材料
冶金
扫描电子显微镜
功率(物理)
物理化学
工程类
物理
电解质
量子力学
作者
Maochun Wu,T.S. Zhao,Ruihan Zhang,Lei Wei,Haoran Jiang
标识
DOI:10.1016/j.electacta.2018.07.192
摘要
Zinc-bromine flow batteries have been regarded as one of the most promising technologies for large-scale energy storage. However, the widespread application of this technology is still hindered by its low power density, primarily resulting from a large polarization in the Br2/Br− electrode. In this work, carbonized tubular polypyrrole with abundant nitrogen- and oxygen-containing functional groups is synthesized and, for the first time, applied to a zinc-bromine flow battery as a positive electrode material. Experimental results unravel that carbonized tubular polypyrrole exhibits a high activity toward the Br2/Br− redox reaction, and enables the zinc-bromine flow battery to be operated at a current density of 80 mA cm−2 with a high energy efficiency of 76.0%. In contrast, the battery with the pristine graphite felt electrode can only output an energy efficiency of 69.4% at the same current density. In addition, no degradation is observed for the zinc-bromine flow battery equipped with carbonized tubular polypyrrole for 100 cycles. These superior results suggest that carbonized tubular polypyrrole is a promising positive electrode material for zinc-bromine flow batteries.
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