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강석주

Kang, Seok Ju
Smart Materials for Energy Lab.
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Ion-selective and chemical-protective elastic block copolymer interphase for durable zinc metal anode

Author(s)
Lee, SangyeopSong, GyujinKim,SunghoHan, Dong-YeobPark, Jae HyunCho, SungjinSon, Hye BinKim, GahyunKang, Seok JuPark, Soojin
Issued Date
2022-10
DOI
10.1016/j.xcrp.2022.101070
URI
https://scholarworks.unist.ac.kr/handle/201301/59789
Citation
CELL REPORTS PHYSICAL SCIENCE, v.3, no.10, pp.1101070
Abstract
Aqueous rechargeable batteries based on zinc anodes are among the most promising systems to replace conventional lithium-ion batteries owing to their intrinsic safety, high ionic conductivity, and economic benefits. However, inferior reversibility of zinc anode resulting from zinc dendrites and surface side reactions limits the practical realization of zinc-ion batteries. Herein, we develop a thin but robust polymeric artificial interphase to enhance reversibility of zinc anode. The grafted maleic anhydride groups in the polymer structure restrain the detrimental reactions through selective zinc-ion penetration and homogenize ion distribution, leading to a smooth electrode surface after plating-stripping processes. Consequently, the coated zinc anode shows excellent stability with a long-term symmetric cell lifespan (>3,000 h at 3 mA·cm−2) and maintains capacity retention of 80% after 2,500 cycles, paired with a manganese oxide cathode. This study provides a facile fabrication process and accessible analysis methods to rationalize the development of high-performance zinc-ion batteries.
Publisher
Elsevier
ISSN
2666-3864
Keyword
INTERFACEDYNAMICS

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