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Hydrogen-bonded QSEBS/ZrO2 2 mixed matrix anion exchange membranes for water electrolyzer
- Kim, Ji Eun;
- Yun, Young Hwa;
- Park, Hyeonjung;
- Albers, Justin;
- Doo, Gisu;
- ... Cho, Hyun-Seok;
- 외 8명
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18SCOPUS
18초록
We present an innovative approach to address the challenges associated with swelling and alkaline stability in anion exchange membranes (AEMs). Our strategy involves integrating hydrogen-bonded ZrO2 2 nanoparticles into quaternized polystyrene-b-poly(ethylene-co-butylene)-b-polystyrene (QSEBS) block copolymer to create a mixed matrix membrane (MMM). To augment the free volume within the polymer matrix and introduce hydrogen bonding sites for interaction with ZrO2, 2 , we incorporated a long-alkyl side chain with a ketone group through Friedel-Crafts acylation. Incorporating ZrO2 2 nanoparticles creates additional ion-transporting water channels due to its high-water adsorption capacity, stemming from uncompensated bonds on its surface. This surface-bound water layer facilitates the rapid transport of solvated hydroxide ions while protecting vulnerable polymer chains from damage. We fabricated MMMs based on QSEBS with varying loads of ZrO2 2 nanoparticles (0 %, 3 %, 6 %, 10 % by weight), resulting in AEMs exhibiting gradual enhancements in ionic conductivity and alkaline stability with increasing ZrO2 2 content. The water electrolysis cell equipped with a QSEBS/ZrO2 2 6 wt% MMM demonstrates enhanced performance, achieving a current density of 1.19 A/cm2 2 at 2.0 V. This outperforms the neat QSEBS membrane, which achieves 0.86 A/cm2 2 at 2.0 V, and exhibits a substantial improvement of 80 % compared to the commercial FAA-3-50 membrane, which achieves 0.66 A/cm2 2 at 2.0 V.
키워드
- 제목
- Hydrogen-bonded QSEBS/ZrO2 2 mixed matrix anion exchange membranes for water electrolyzer
- 저자
- Kim, Ji Eun; Yun, Young Hwa; Park, Hyeonjung; Albers, Justin; Doo, Gisu; Lee, Sechan; Seo, Jongsu; Lee, Changsoo; Kim, Minjoong; Cho, Hyun-Seok; Kim, Sang-Kyung; Lee, Jae Hun; Choi, Young-Woo; Kim, Jong Hak
- 발행일
- 2024-11-15
- 유형
- Article
- 저널명
- Fuel
- 권
- 376