材料科学
纳米技术
纳米线
纳米结构
石墨烯
成核
薄膜
化学工程
氧化物
箔法
原子层沉积
图层(电子)
阳极
电解质
锂(药物)
复合材料
电极
冶金
医学
化学
有机化学
物理化学
内分泌学
工程类
作者
Sojeong Won,Arum Jung,K. Y. Lim,Jinhan Cho,Jeong Gon Son,Hee‐Dae Lim,Bongjun Yeom
出处
期刊:Small
[Wiley]
日期:2025-02-03
卷期号:21 (11): e2412784-e2412784
被引量:2
标识
DOI:10.1002/smll.202412784
摘要
Abstract Reducing the thickness of the Li‐metal anode is key to enhancing the energy density of batteries. However, poor initial lithium deposition on Cu current collectors can exacerbate the growth of lithium dendrites and limit performance. This study explores innovative strategies by fabricating graphene oxide (GO) and silver nanowire (AgNW) thin films onto Cu‐foil using the layer‐by‐layer (LbL) assembly method. The homogeneous LbL thin films are prepared with the assistance of bifunctional cross‐linkers, such as cysteamine, to strengthen the intermolecular interactions between the nano‐building blocks. The GO/AgNW LbL thin films possess a highly interdigitated nanostructure that combines the synergistic advantages of the individual building components. The GO layers facilitate the distribution of Li‐ionic flux through the films, which promotes the formation of stable solid electrolyte interphase layers. In addition, the AgNW layers provide electrical pathways and serve as nucleation sites for Li─Ag alloy reactions. These combined effects lead to a flat and stable initial Li‐deposition, as well as dense and compact Li growth, without significant dendrite formation. The full cell tests show excellent cycle longevity, 430 cycles with an N/P ratio of 3.36 at 1 C and 250 cycles with an N/P ratio of 1.81 at 3 C.
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