All-solid-state sponge-like squeezable zinc-air battery

Zhenghui Pan, Jie Yang, Wenjie Zang, Zongkui Kou, Cun Wang, Xiaoyu Ding, Cao Guan, Ting Xiong, Hao Chen, Qichong Zhang, Yaotang Zhong, Meinan Liu, Lidan Xing, Yongcai Qiu, Weishan Li, Chenlin Yan, Yuegang Zhang, John Wang

科研成果: 期刊稿件文章同行评审

57 引用 (Scopus)

摘要

Squeezable energy storage devices, including those zinc air batteries (ZABs) of high theoretical energy densities, are of great interest for flexible and wearable electronics that are able to accommodate large strains without remarkable loss in electrochemical performance and reliability. However, the performance of ZABs in such flexible environment is significantly hindered by the kinetically sluggish rate of oxygen reduction reaction (ORR)/oxygen evolution reaction (OER) in the air electrode, especially upon large deformation due to the lack of highly active and squeezable electrode materials. Herein, we present an advanced electrode by directly depositing Fe-doped Co3O4 nanowires on nitrogen-doped carbon foams (Fe-Co3O4 NWs@NCFs) with superior bifunctional catalytic performance (Ej=10 (OER) - E1/2 (ORR) = 0.61 V) in an alkaline medium. As a proof-of-concept application, a highly squeezable all-solid-state ZAB was assembled with Fe-Co3O4 NWs@NCFs as the air electrode and Zn NSs@NCFs (electrodeposited Zn nanosheets on NCFs) as the Zn electrode, which is shown to possess a high open circuit potential (1.51 V), a low discharge/charge voltage gap (0.657 V at 5 mA cm−2) and a large power density (260 mW cm−2). Furthermore, the great squeeze-ability (up to 60% strain) and mechanical endurance properties (tested by repetitive compressions for 500 cycles) in particular make the ZAB a potentially promising power source for compression-tolerant electronics.

源语言英语
页(从-至)375-382
页数8
期刊Energy Storage Materials
23
DOI
出版状态已出版 - 12月 2019
已对外发布

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