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Effect of the terphenyl isomeric structure on poly(diallyldialkylammonium)-functionalized anion exchange membranes for water electrolysis
- Kim, Dana;
- Jang, Jeongmin;
- Jung, Jiyoon;
- Ku, Jinsuk;
- Park, Young Sang;
- ... Lee, Jung-Hyun;
- 외 1명
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0초록
The structural design of anion exchange membranes (AEMs) critically affects their ionic conductivity, mechanical strength, and alkaline stability-key requirements for high-performance AEM water electrolyzers (AEMWEs). Herein, we report a backbone isomerism engineering strategy to modulate hydration and transport properties by synthesizing m-terphenyl and p-terphenyl units as rigid aromatic backbones, functionalized with pyrrolidinium groups via cyclopolymerization and covalent crosslinking. Beyond homopolymer studies, physical blends and random copolymers were systematically compared to investigate how backbone geometry and the integration method influence membrane properties. All membranes exhibited low swelling and relatively high mechanical strength under wet conditions, while hydration and conductivity varied depending on the structure and polymer type. m-Terphenyl-based AEMs formed a twisted, microporous structure, providing higher free volume, water uptake, and hydroxide conductivity than their p-terphenyl counterparts. In contrast, p-terphenyl-based membranes exhibited superior mechanical strength and alkaline stability due to their linear conformation. Blends and copolymers showed intermediate properties, balancing hydration and mechanical robustness. Considering water electrolysis performance and durability, these structural variations were found to directly influence practical AEMWE operation. Notably, the m-terphenyl-based membrane achieved a high AEMWE performance of 8.6 A cm-2 at 2.0 V using a non-platinum group metal anode, outperforming the blend, copolymer, and p-terphenyl-based membranes. This study provides the first comprehensive correlation between terphenyl isomerism and AEM performance, offering molecular-level insights into how backbone architecture can be tailored to enhance electrochemical functionality.
키워드
- 제목
- Effect of the terphenyl isomeric structure on poly(diallyldialkylammonium)-functionalized anion exchange membranes for water electrolysis
- 저자
- Kim, Dana; Jang, Jeongmin; Jung, Jiyoon; Ku, Jinsuk; Park, Young Sang; Lee, Jung-Hyun; Lee, Albert S.
- 발행일
- 2026-07-30
- 유형
- Article
- 권
- 14
- 호
- 45
- 페이지
- 30880 ~ 30895