Highly-lithiophilic Ag@PDA-GO film to Suppress Dendrite Formation on Cu Substrate in Anode-free Lithium Metal Batteries

材料科学 法拉第效率 阳极 电解质 成核 过电位 基质(水族馆) 化学工程 氧化物 锂(药物) 集电器 电化学 枝晶(数学) 纳米技术 冶金 电极 地质学 工程类 海洋学 内分泌学 物理化学 有机化学 化学 医学 数学 几何学
作者
Zewdu Tadesse Wondimkun,Wodaje Addis Tegegne,Shi‐Kai Jiang,Chen‐Jui Huang,Niguse Awoke Sahalie,Misganaw Adigo Weret,Jui‐Yu Hsu,Pei‐Lun Hsieh,Yu-Shan Huang,She‐Huang Wu,Wei‐Nien Su,Bing‐Joe Hwang
出处
期刊:Energy Storage Materials [Elsevier BV]
卷期号:35: 334-344 被引量:161
标识
DOI:10.1016/j.ensm.2020.11.023
摘要

Lithium metal establishes a promising anode, but it suffers from dendrite growth. Constructing a current collector with stable artificial solid electrolyte interphase (SEI) and lithiophilic matrix is highly considered for achieving uniform lithium (Li) deposition. In this work, lithiophilic silver nanoparticles with polydopamine ([email protected]) were synthesized successfully and coated on the copper (Cu) current collector to use as a nucleation seed to improve the lithium nucleation. More importantly, graphene oxide (GO) was effectively coated on the top of [email protected] to act as artificial SEI to buffer the Li-ion distribution in anode free lithium metal batteries (AFLMBs). Thus, the synergistic effect of the modified electrodes displays a uniform Li metal deposition and dendrite free morphology during repeated cycling. Accordingly, the Cu|[email protected]//Li, and Cu|[email protected]//Li cells demonstrate relatively uniform lithium nuclei, lower nucleation overpotential, and higher CE compared to the uncoated electrode. Besides, the Cu|[email protected]//NMC full cell owns higher average Coulombic efficiency (~ 98.6%) and higher capacity retention (~ 55.7%) after 60 cycles within 5% fluoroethylene carbonate (FEC) in the carbonate-based electrolyte at 0.5 mA cm−2. While, the bare copper only achieves, 94.4% and 4.3% average Coulombic efficiency and capacity retention, respectively. Therefore, a lithiophilic matrix integrated with an artificial SEI coating on the Cu substrate offers a feasible way for the inhibition of lithium dendrite and electrolyte decomposition in the anode free lithium metal batteries (AFLMBs).
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