Tea Polyphenol-Derived Zinc-Rich Complexes for Enhanced Interfacial Dynamics in PEO-Based Gel Electrolytes.

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Tác giả: Bozhong Cao, Bingchun Jiang, Lei Ling, Yusheng Lu, Qian Qu, Jingyu Xu, Jincheng Zhang, Tong Zhang, Shubing Zhen, Tianyu Zou

Ngôn ngữ: eng

Ký hiệu phân loại: 238.19 Eastern Church

Thông tin xuất bản: United States : ACS applied materials & interfaces , 2025

Mô tả vật lý:

Bộ sưu tập: NCBI

ID: 198087

The aqueous zinc-ion battery (AZIB) is regarded as one of the most promising energy storage solutions. However, its widespread adoption is hindered by challenges such as zinc dendrite formation and undesirable side reactions, primarily caused by excess free water molecules and ions. This study introduces an ethylene oxide (PEO)-based gel electrolyte designed to address these limitations. By incorporating a zinc-rich ionic conductor (TP-Zn) that establishes a cross-linked hydrogen bond network, we successfully reduce the crystallinity of the PEO matrix and enhance the ionic conductivity and mechanical strength of the electrolyte. The resulting PGPS@TP-Zn gel electrolyte exhibits a remarkable tensile deformation of up to 1785%. The incorporation of TP-Zn significantly alleviates interfacial challenges between the electrolyte and electrode, leading to a more uniform zinc ion flux distribution. This, in turn, improves ion transport kinetics, resulting in a high ionic conductivity of 1.32 × 10
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