动力学
氧化还原
水溶液
锌
涂层
聚合物
化学工程
离子
材料科学
化学
无机化学
纳米技术
有机化学
物理
量子力学
工程类
作者
Hyeong Seop Jeong,Dong Il Kim,Wooseok Lee,Hee Bin Jeong,Seunghwan Jo,Junsung Byeon,Yongjae Kwon,Young‐Hyeon An,Won Bo Lee,SeungNam Cha,Jin Pyo Hong,Jung Inn Sohn,YongJoo Kim,John Hong
出处
期刊:Energy & environmental materials
[Wiley]
日期:2025-01-15
被引量:1
摘要
The fundamental issues associated with Zn anodes prevent the commercialization of aqueous Zn ion batteries. To address this, a simple dip‐coating method was used to coordinate a thin layer of branched polyethyleneimine (b‐PEI) polymer onto the electrode surface. This process increases hydrophilicity and reduces interfacial resistance between the electrode and aqueous electrolyte. Consequently, electrolyte leaching from the hydrophilic polymer coating layer is prevented, charge distribution is uniform, and stable electrochemical performance is maintained over extended periods. In symmetric cell testing, the b‐PEI@Zn anode exhibits a lifespan of over 1400 h (3 mA cm −2 , 1 mAh cm −2 ). Furthermore, full‐cell tests, the b‐PEI@Zn anode demonstrates higher capacity (+26.05%) and improved stability (95.4%) compared to the bare Zn anode (0.5 A g −1 ). This study presents a practical surface modification strategy for Zn anodes and underscores the potential of innovative polymer‐based electrode coatings for aqueous battery applications.
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