材料科学
膜
电解质
化学工程
电导率
离子运输机
离子电导率
离子交换
电解
氢氧化物
烷基
两亲性
离子键合
侧链
无机化学
阳离子聚合
离子
水运
聚合物
法拉第效率
电解水
耐久性
作者
Chengxiao Zhou,Tongxin Yin,Jinhong Shi,Hanchi Zhang,Yanyou Hua,Xiukai Shi,Zhenquan Chen,Xi Wang,Ji Sheng Pan,Zhe Sun,Feng Yan
摘要
ABSTRACT Anion exchange membranes (AEMs) have advanced anion exchange membrane water electrolyzers (AEMWEs) by achieving high ionic conductivity and controlled swelling, yet balancing hydration‐enhanced electrolytic performance and swelling‐induced dimensional instability remains a key challenge for scalable application. In this work, we advance beyond conventional cationic grafting modification strategies via the rational design of fluorinated alkyl side chains on hydrophobic polymer backbones, thereby enhancing amphiphilic self‐assembly. Such structural engineering facilitates the formation of interconnected pathways that enable efficient hydroxide ion and water transport. The resulting PTA fc P membrane exhibits a low swelling ratio of 14.38% and an OH − conductivity of 179.2 mS cm −1 at 80°C. Notably, the establishment of an efficient alkaline electrolyte transport network enables the PTA fc P‐based electrolyzer to achieve a current density of 7.5 A cm −2 . Furthermore, the electrolyzer incorporating a PTA fc P membrane demonstrates satisfactory durability over 2000 h of operation, exhibiting a voltage fade rate of only 17.9 µV h −1 at 0.5 A cm −2 , substantiating its application potential for industrial‐scale deployment.
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