电解水用溶剂化离子交换膜的研究现状及存在问题OA
Development Status and Existing Problems of Ion-Solvation Membranes for Electrolysis of Water
溶剂化离子交换膜近年来作为电化学能源转换与存储装置的核心组件,已获得学界广泛关注.本文从基质结构分类角度,系统梳理了离子交换膜的结构组成、性能优势、研究进展、离子传导机制及现存问题,并深入解析了性能优化方法、关键性能指标及影响因素.该研究为优化离子交换膜的设计应用提供理论支撑,为未来水电解制氢、电化学储能等领域的技术发展注入新动能.
Ion-solvaing membranes(ISMs)have received extensive attention in recent years as a key component in electrochemical energy conversion and storage devices.This article provides an overview of structural composition,performance advan-tages,research progress,ion conduction mechanism and existing issues of ISMs,primarily classifying them according to the matrix structure.A detailed analysis of performance enhancement methods,key performance indicators of ISMs and performance influencing factors is also presented.The article contributes to further optimizing the design and application of ion-solvation membranes,providing theoretical support for the development of fields such as hydrogen production through electrolysis of water and electrochemical energy in the future.
周正元;孙雨涛;刘振邦;王传正;周永南;罗希;周天池;乔锦丽
东华大学环境工程学院国家先进纤维材料重点实验室,上海,201620盐城工学院柔性功能材料研究所,盐城,224051上海工程技术大学纺织服装学院,上海,201620东华大学环境工程学院国家先进纤维材料重点实验室,上海,201620||盐城工学院柔性功能材料研究所,盐城,224051东华大学环境工程学院国家先进纤维材料重点实验室,上海,201620东华大学环境工程学院国家先进纤维材料重点实验室,上海,201620盐城工学院柔性功能材料研究所,盐城,224051||绍兴市图锦纺织有限公司博士创新工作站,绍兴,312099东华大学环境工程学院国家先进纤维材料重点实验室,上海,201620
离子溶剂化膜碱性水电解去质子化基团离子传导机制氢能
Ion-solvation membraneAlkaline water electrolysisDeprotonated groupIonic conduction mechanismHydrogen energy
《电化学(中英文)》 2026 (1)
1-26,26
This work was supported by the National Key Research and Development Program of China(2022YFE0138900)and the"Scientific and Techni-cal Innovation Action Plan"Basic Research Field of Shanghai Science and Technology Committee(19JC1410500).
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