首页|Pushing the Limit of Flexible Batteries

Pushing the Limit of Flexible Batteries

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Alongside the rapid development of flexible and wearable electronics,the search for reliable,safe,and high-energy rechargeable flexible batteries(FBs)has become a research hotspot in recent years.Although there are some prototype FBs exhibited by the indus-try and a rapidly increasing number of publications reported by academia,most demonstrations are shown on a laboratory scale,and it is still difficult to find real implementation of the technology in the market.This perspective aims to discuss and analyze the key metrics,including energy density,flexibility,and safety,that are critical to pushing FBs to a com-mercially viable level,with a special focus on the lithium batteries and zinc batteries most reported in the literature.We first compare the figure of merit of FBs(fbFOM)of existing lithium-based and zinc-based FBs with the requirement for market applications.We then analyze the most desired cell configurations toward high flexibility,followed by systematic discus-sions on features and materials selection toward high energy density FBs.Third,we discuss strategies to enhance battery safety.An outlook of the future developments needed to address the gaps between the state-of-the-art demonstrations and real applica-tions is provided at the end of this article.

flexible batteryenergy densitysafetylithium batteryzinc battery

Chuan Xie、Yanpeng Guo、Zijian Zheng

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Department of Applied Biology and Chemical Technology,Faculty of Science,The Hong Kong Polytechnic University,Hung Hom,Hong Kong

School of Fashion and Textiles,The Hong Kong Polytechnic University,Hung Hom,Hong Kong

Research Institute for Intelligent Wearable Systems(RI-IWEAR),The Hong Kong Polytechnic University,Hung Hom,Hong Kong

Research Institute for Smart Energy(RISE),The Hong Kong Polytechnic University,Hung Hom,Hong Kong

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financial support from RGC Postdoctoral Fellowship SchemeScience and Technology Bureau of Huangpu DistrictInnovation and Technology FundInnovation and Technology Fund

PDFS2223_5S012020GH03GHP/047/20GDPRP/055/21FX

2023

中国化学会会刊(英文)

中国化学会会刊(英文)

CSCD
ISSN:
年,卷(期):2023.5(3)
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