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Uniform and oriented zinc deposition induced by artificial Nb2O5 Layer for highly reversible Zn anode in aqueous zinc ion batteries

Authors
So, SeongjoonAhn, Yong NamKo, JaewookKim, Il TaeHur, Jaehyun
Issue Date
Nov-2022
Publisher
ELSEVIER
Keywords
Zn-ion aqueous battery; Nb2O5; Artificial layer; Zn-ion flux regulation; Orientated morphology
Citation
ENERGY STORAGE MATERIALS, v.52, pp.40 - 51
Journal Title
ENERGY STORAGE MATERIALS
Volume
52
Start Page
40
End Page
51
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/85892
DOI
10.1016/j.ensm.2022.07.036
ISSN
2405-8297
Abstract
Zn metal has recently emerged as a promising candidate for stable and reversible anode in aqueous rechargeable batteries. However, despite the high reversibility of Zn metal in aqueous media, Zn metal anode utilization is limited owing to unavoidable dilemmas, such as dendrite growth, hydrogen gas evolution, and "dead Zn ", eventually leading to battery breakdown. Herein, we propose a Nb2O5 film as an effective coating layer to guarantee uniform ion flux and a rapid transportation pathway for Zn ions through Maxwell-Wagner polari-zation, resulting in homogeneous Zn electrodeposition under the Nb2O5 layer. The artificial Nb2O5 layer coated on the Zn surface (Nb2O5@Zn) acted as a guide for Zn deposition, enabling a dense and uniform morphology of electrodeposited Zn oriented in a specific direction. The symmetric Nb2O5@Zn anode system exhibited stable plating/stripping for up to 1000 h. Outstanding durability and resilience (220 h at 5 mA cm(-2)/5 mAh cm(-2)) and rapid plating/stripping with excellent recovery (returning to 1 from 10 mA cm(-2)) were verified under harsh cycling conditions. The excellent characteristics of Nb2O5 layer resulted in high electrochemical stability and performance for a full cell with a VO2 cathode for practical applications.
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Ahn, Yong Nam
Engineering (화공생명배터리공학부)
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