阳离子聚合
嫁接
哌啶
硫化物
离子交换
化学
高分子化学
侧链
电解
膜
群(周期表)
离子
有机化学
生物化学
电解质
聚合物
电极
物理化学
作者
Kexin Chen,Aman Liu,Boming Zhang,Jianxiong Hu,Jian Li,Qiang Ren,Chenyi Wang
标识
DOI:10.1021/acsapm.4c02977
摘要
Aryl-piperidine polymers are preferred for anion exchange membranes (AEMs) due to their excellent designability and alkaline resistance stability. In the present work, a poly(diphenyl sulfide piperidine) polymer backbone, distinct from the conventional poly(biphenyl piperidine), is synthesized via a superacid-catalyzed reaction. Subsequently, a series of AEMs (PPSP-xPip) are achieved by grafting cationic groups with long flexible alkyl chains onto the main chain. All membranes demonstrate good membrane-forming ability and toughness with elongation at break ranging from 16.8 to 34.5%. The OH– conductivity of them is in the range of 88.4–117.1 mS cm–1 at 80 °C, attributed to the high water uptake and the favorable microphase separation structure. The representative PPSP-35Pip membrane exhibits high alkaline stability with 89% of the conductivity retention ratio in 2 M NaOH after 520 h at 80 °C. The current density of its water electrolyzer cell reaches 0.619 A cm–2 in 2 M NaOH electrolyte at 2.0 V. After 520 h of endurance testing, the water electrolyzer maintains excellent stability with the voltage fluctuation of only 1.07%.
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