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Structure-Controlled Carbon Hosts for Dendrite-Free Aqueous Zinc Batteries

Authors
Lee, KyungbinLee, Young JunLee, Michael J.Han, JunghunRyu, KunKwon, Jeong AnKim, Eun JiKang, HyewonKim, Byung-HyunKim, Bumjoon J.Lee, Seung Woo
Issue Date
Sep-2023
Publisher
Wiley - V C H Verlag GmbbH & Co.
Keywords
defective sp 2-carbon; mesoporous carbon host; zinc metal anodes; zinc-ion batteries
Citation
Small, v.19, no.36, pp 1 - 8
Indexed
SCIE
SCOPUS
Journal Title
Small
Volume
19
Number
36
Start Page
1
End Page
8
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/116012
DOI
10.1002/smll.202302334
ISSN
1613-6810
1613-6829
Abstract
The surging demand for environmental-friendly and safe electrochemical energy storage systems has driven the development of aqueous zinc (Zn)-ion batteries (ZIBs). However, metallic Zn anodes suffer from severe dendrite growth and large volume change, resulting in a limited lifetime for aqueous ZIB applications. Here, it is shown that 3D mesoporous carbon (MC) with controlled carbon and defect configurations can function as a highly reversible and dendrite-free Zn host, enabling the stable operation of aqueous ZIBs. The MC host has a structure-controlled architecture that contains optimal sp(2)-carbon and defect sites, which results in an improved initial nucleation energy barrier and promotes uniform Zn deposition. As a consequence, the MC host shows outstanding Zn plating/stripping performance over 1000 cycles at 2 mA cm(-2) and over 250 cycles at 6 mA cm(-2) in asymmetric cells. Density functional theory calculations further reveal the role of the defective sp(2)-carbon surface in Zn adsorption energy. Moreover, a full cell based on Zn@MC900 anode and V2O5 cathode exhibits remarkable rate performance and cycling stability over 3500 cycles. These results establish a structure-mechanism-performance relationship of the carbon host as a highly reversible Zn anode for the reliable operation of ZIBs.
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ERICA 공학대학 (ERICA 에너지바이오학과)
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