材料科学
过电位
阳极
锌
成核
枝晶(数学)
石墨
电偶阳极
基质(水族馆)
纳米技术
化学工程
复合材料
电极
冶金
电化学
阴极保护
化学
几何学
数学
有机化学
物理化学
工程类
海洋学
地质学
作者
Guoyuan Chen,Zhiyuan Sang,Jianghui Cheng,Shandong Tan,Zhehan Yi,Xueqi Zhang,Wenping Si,Yuxin Yin,Ji Liang,Feng Hou
标识
DOI:10.1016/j.ensm.2022.05.036
摘要
The rapid development of wearable electronics has boosted the exploration of flexible and safe energy storage devices, such as zinc ion batteries or capacitors; and suppressing the dendrite growth for Zn anode is essential for enhancing their performance. Addressing this, we report a dendrite-free and flexible Zn metal anode ([email protected]/EG) that is based on expanded graphite (EG) decorated with in-situ formed copper particles (Cu-Ps). In this material, the Cu-Ps act as zincophilic seeds that reduce zinc nucleation overpotential, while the EG substrate induces epitaxial electrodeposition of zinc for suppressing dendrite growth. Moreover, the Cu-Ps nail the graphite nanosheets tightly and enhance the mechanical strength and flexibility of the Cu-Ps/EG composite. Consequently, the [email protected]/EG anode exhibits a low Zn deposition overpotential of 142.8 mV and superior cycling performance over 3000 h upon cycling at 10.0 mA cm−2 and 10.0 mAh cm−2. A flexible Zn-ion capacitor equipped with this anode delivers excellent cycling performance for over 1600 cycles at 1.0 A g−1 and stable power output at various bending statuses. This work provides a new approach for designing advanced flexible and dendrite-free Zn metal anodes for energy storage applications.
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