Liquid Metal-Skinned Zn Powder Anodes Enabled by Capillary Suspension
  • 강현서
  • Kim Seung-Hyeok
  • Ahn David B.
  • Wang Xiao
  • Wu Zhong-Shuai
  • 외 1명
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초록

Zinc (Zn) powder-based anodes have garnered considerable attention as viable alternatives to their conventional Zn foil-based counterparts. However, challenges arising from undesirable interfacial side reactions and dendritic Zn growth hinder their practical implementation. Here, we present a class of liquid metal-skinned Zn (LSZ) powder anodes enabled by capillary suspension. The capillary suspension strategy can overcome the miscibility of liquid metal with other components, resulting in the self-standing and uniform LSZ powder anode. The nanothick eutectic gallium-indium (EGaIn) skin layer on Zn powders facilitated the horizontal growth of Zn along the (002) plane and mitigated Zn corrosion and hydrogen evolution reaction. Consequently, a full cell (V2O5 cathode parallel to LSZ powder anode) exhibited a stable capacity retention per cycle of 99.99% over 2000 cycles at a fast current rate of 1 A g(-1), outperforming those of previously reported aqueous Zn full cells.

제목
Liquid Metal-Skinned Zn Powder Anodes Enabled by Capillary Suspension
저자
강현서Kim Seung-HyeokAhn David B.Wang XiaoWu Zhong-ShuaiLee Sang-Young
DOI
10.1021/acsenergylett.4c01009
발행일
2024-05
저널명
ACS Energy Letters
9
6
페이지
2816 ~ 2825