材料科学
双功能
催化作用
氮化物
化学工程
合金
析氧
阴极
氧气
电化学
电极
纳米技术
冶金
物理化学
化学
生物化学
有机化学
图层(电子)
工程类
作者
Wenxian Liu,Xinxin Niu,Jinxiu Feng,Ruilian Yin,Suli Ma,Wenbin Que,Jiale Dai,Jiawei Tang,Fangfang Wu,Wenhui Shi,Xijun Liu,Xiehong Cao
标识
DOI:10.1021/acsami.2c21616
摘要
The practical applications of temperature-tolerant Zn–air batteries (ZABs) rely on highly active and stable bifunctional catalysts that accelerate cathodic oxygen reduction (ORR) and oxygen evolution (OER) reactions. Herein, we successfully integrated fascinating transition metal nitrides and FeCo alloys through a simple coordination assembly and pyrolysis process. Importantly, the alloy-to-nitride ratio in the heterogeneous catalyst can be carefully regulated through the subsequent etching process. Moreover, the composition-dependent ORR/OER performance of the FeCo-Mo0.82N catalysts was revealed. Aqueous ZABs using the optimized FeCo-Mo0.82N-60 as a cathode exhibit a high peak power density of 149.7 mW cm–2 and an impressive stability of 600 h with a low charge–discharge voltage gap decay rate of 0.025 mV h–1, which exceeds those of most of recent reports. Furthermore, the FeCo-Mo0.82N-60-based flexible ZABs display a small specific capacity degradation (3%) from 40 to −10 °C, demonstrating excellent temperature tolerance.
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