侧链型氟掺杂聚(对三联苯哌啶)阴离子交换膜的制备  

Preparation of side-chain fluorine-doped poly(p-terphenypiperidine)anion exchange membranes

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作  者:张国良 于泽 张秋根 朱爱梅 刘庆林 ZHANG Guoliang;YU Ze;ZHANG Qiugen;ZHU Aimei;LIU Qinglin(The College of Chemistry and Chemical Engineering,Xiamen University,Xiamen 361005,China)

机构地区:[1]厦门大学化学化工学院,福建省理论与计算化学重点实验室,厦门361005

出  处:《膜科学与技术》2024年第6期10-17,25,共9页Membrane Science and Technology

基  金:国家自然基金面上项目(22078272,22278340)。

摘  要:作为阴离子交换膜燃料电池(Anion exchange membrane fuel cell,AEMFC)核心部件,阴离子交换膜(Anion exchange membrane,AEM)存在离子电导率和溶胀之间的trade off效应,以及机械性能不足的问题,阻碍其商业化应用.本研究通过合成侧链氟原子分别位于多阳离子侧链末端苯环的邻位、间位和对位的3种疏水性侧链型AEM,探究含氟基团位于不同位置对AEM性能影响.其中,侧链氟原子位于多阳离子侧链末端苯环邻位的PTF6 PTPQ2F具有低溶胀(7.13%,80℃)和高离子电导率(165.79 mS/cm,80℃)的特性,且其能够在较苛刻的碱性环境中维持高离子电导保留率(92.42%,80℃,2 mol/L NaOH,1500 h).此外,PTF6 PTPQ2F在单电池功率密度(990 mW/cm^(2),80℃)以及耐久性方面均具有优势.相对于PTF6 PTPQ3F和PTF6 PTPQ4F,PTF6 PTPQ2F的各项性能较好.As the core component of anion exchange membrane fuel cell(AEMFC),anion-exchange membrane(AEM)has a trade-off effect between ionic conductivity and swelling,as well as insufficient mechanical properties,which hinder its commercial application.This study synthesized three types of hydrophobic side-chain fluorine-containing AEMs with the fluorine atom located at the end of the side chain of the polycation and at the ortho,meta,and para positions of the aromatic ring,respectively,to investigate the influence of the position of the fluorine group on the performance of AEM.Among them,PTF6 PTPQ2F,whose side chain fluorine atom is located in the benzene ring at the end of the polycationic side chain,had the characteristics of low swelling(7.13%,80℃)and high ionic conductivity(165.79 mS/cm,80℃),and could maintain high ionic conductivity retention(92.42%,80℃,2 mol/L NaOH,1500 h)in a harsh alkaline environment.In addition,PTF6 PTPQ2F offered advantages in terms of single-cell power density(990 mW/cm^(2),80℃)as well as durability.Compared with PTF6 PTPQ3F and PTF6 PTPQ4F,PTF6 PTPQ2F had relatively better performance.

关 键 词:燃料电池 离子交换膜 氟掺杂阴离子交换膜 

分 类 号:O632.7[理学—高分子化学] TQ028[理学—化学]

 

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