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无机与聚合物混合涂层对无枝晶锌阳极的协同长期保护

Synergistic Long-Term Protection of Inorganic and Polymer Hybrid Coatings for Free-Dendrite Zinc Anodes.

作者信息

Jia Shunshun, Bian Haifeng, Wang Biao, Zhou Qing, Xue Ge, Wu Hao, Li Fengqi, Hu Zhonglu, Ma Yujie, Gu Jian, Tang Shaochun, Meng Xiangkang

机构信息

National Laboratory of Solid State Microstructures, Collaborative Innovation Center of Advanced Microstructures, College of Engineering and Applied Sciences, Nanjing University, Nanjing 210093, P. R. China.

出版信息

Langmuir. 2024 Nov 26;40(47):25143-25153. doi: 10.1021/acs.langmuir.4c03380. Epub 2024 Nov 13.

Abstract

Constructing an artificial solid electrolyte interface protective layer on the surface of the zinc anode is an effective strategy for addressing dendrite growth, passivation, and the hydrogen evolution reaction in aqueous zinc-ion batteries. This study introduces a robust interlayer composed of a polyvinyl butyral matrix decorated with SiO particles (PS). Adsorption of water by Si-OH on the surface of SiO leads to excellent hydrophilicity and accelerates the desolvation of ions. A highly stable and hydrophilic PS coating enhances ion migration and possesses ultralong protection ability, ensuring uniform ion deposition and a lower nucleation barrier. Anodes protected by the PS coating achieve long-term cycling stability of >4000 h at 2 mA cm in symmetric cells. The assembled PS-Zn//NHVO full cells exhibit superior electrochemical performance, demonstrating their potential for practical applications in rechargeable zinc batteries.

摘要

在锌负极表面构建人工固体电解质界面保护层是解决水系锌离子电池中枝晶生长、钝化和析氢反应问题的有效策略。本研究引入了一种由装饰有SiO颗粒的聚乙烯醇缩丁醛基体组成的坚固中间层(PS)。SiO表面的Si-OH对水的吸附导致优异的亲水性并加速离子去溶剂化。高度稳定且亲水的PS涂层增强了离子迁移并具有超长的保护能力,确保离子均匀沉积并降低成核势垒。在对称电池中,受PS涂层保护的负极在2 mA cm下实现了>4000 h的长期循环稳定性。组装的PS-Zn//NHVO全电池表现出优异的电化学性能,展示了其在可充电锌电池实际应用中的潜力。

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