Tactile UV‐ and Solar‐Light Multi‐Sensing Rechargeable Batteries with Smart Self‐Conditioned Charge and Discharge

A tactile, UV‐ and solar‐light multi‐sensing smart rechargeable Zn–air battery (SRZAB) with excellent cell performance, self‐conditioned charge/discharge, and reliable environmental responsivity is made by using multi‐scale conjugated block‐copolymer–carbon nanotube–polyurethane foam assemblies as b...

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Veröffentlicht in:Angewandte Chemie International Edition 2019-07, Vol.58 (27), p.9248-9253
Hauptverfasser: Fang, Zhengsong, Zhang, You, Hu, Xuanhe, Fu, Xinlong, Dai, Liming, Yu, Dingshan
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Sprache:eng
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Zusammenfassung:A tactile, UV‐ and solar‐light multi‐sensing smart rechargeable Zn–air battery (SRZAB) with excellent cell performance, self‐conditioned charge/discharge, and reliable environmental responsivity is made by using multi‐scale conjugated block‐copolymer–carbon nanotube–polyurethane foam assemblies as both a self‐standing air electrode and a sensing unit. Multiscale engineering fully exploits the multi‐synergy among components to endow the newly designed metal‐free multi‐sensing air electrode (MSAE) with bifunctional oxygen reduction and evolution activities, pressure sensitivity, and photothermal and photoelectric conversion functions in a single electrode, enabling effective regulation of interface properties, electronic/ionic transport, or redox reactions in SRZAB upon various stimulations and establishing multiple working principles. MSAE‐driven SRZAB can be used as compressible power sources, self‐powered pressure and optical sensors and light‐to‐electrochemical energy systems. Hold tightly: A tactile, UV‐ and solar‐light multi‐sensing smart rechargeable Zn‐air battery is presented by using metal‐free conjugated block copolymer–carbon nanotube–polyurethane foam assemblies as an all‐in‐one air electrode. It simultaneously integrates bifunctional oxygen catalysis capability, a piezo‐resistance effect, and photothermal and photoelectric conversion functions.
ISSN:1433-7851
1521-3773
DOI:10.1002/anie.201903805