Smart Solar-Metal-Air Batteries Based on BiOCl Photocorrosion for Monolithic Solar Energy Conversion and Storage

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Lan, Yalin
Batmunkh, Munkhbayar
Li, Peng
Qian, Bingzhi
Bu, Degang
Zhao, Qin
Huang, Hongwei
Sun, Wenping
Zhang, Yu
Ma, Tianyi
Song, Xi-Ming
Jia, Baohua
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2021
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Abstract

Herein, a BiOCl hydrogel film electrode featuring excellent photocorrosion and regeneration properties acts as the anode to construct a novel type of smart solar-metal-air batteries (SMABs), which combines the characteristics of solar cells (direct photovoltaic conversion) and metal-air batteries (electric energy storage and release interacting with atmosphere). The cyclic photocorrosion processes between BiOCl (Bi3+ ) and Bi can simply be achieved by solar light illumination and standing in the dark. Upon illumination, the device takes open-circuit configuration to charge itself from the sunlight. Notably, in this system, the converted solar energy can be stored in the SMABs without the need of external assistance. In the discharging process in the dark, Bi0 spontaneously turns back to Bi3+ producing electrons to induce the oxygen reduction reaction. With an illumination of 15 min, the battery with an electrode area of 1 cm2 can be continuously discharged for ≈3000 s. Taking elemental Bi as the calculation object, the theoretical capacity of the SMABs is 384.75 mAh g-1 , showing its potential application in energy storage. This novel type of SMABs is developed based on the unique photocorrosive and self-oxidation reaction of BiOCl to achieve photochemical energy generation and storage.

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Small

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© 2021 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim. This is the peer reviewed version of the following article: Smart Solar–Metal–Air Batteries Based on BiOCl Photocorrosion for Monolithic Solar Energy Conversion and Storage, Small, 2021, which has been published in final form at https://doi.org/10.1002/smll.202105668. This article may be used for non-commercial purposes in accordance with Wiley Terms and Conditions for Self-Archiving (http://olabout.wiley.com/WileyCDA/Section/id-828039.html)

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This publication has been entered in Griffith Research Online as an advanced online version.

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Nanotechnology

BiOCl

hydrogel film electrodes

metal-air batteries

photocorrosion

solar cells

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Lan, Y; Batmunkh, M; Li, P; Qian, B; Bu, D; Zhao, Q; Huang, H; Sun, W; Zhang, Y; Ma, T; Song, X-M; Jia, B, Smart Solar-Metal-Air Batteries Based on BiOCl Photocorrosion for Monolithic Solar Energy Conversion and Storage., Small, 2021, pp. e2105668

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