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Electronic Effect-Modulated Enhancements of Proton Conductivity in Porous Organic Polymers
- Kim, Sun Young;
- Kang, Minjung;
- Kang, Dong Won;
- Kim, Hyojin;
- Choe, Jong Hyeak;
- ... Hong, Chang Seop;
- 외 1명
WEB OF SCIENCE
108SCOPUS
12초록
We proposed a new strategy to maximize the density of acidic groups by modulating the electronic effects of the substituents for high-performance proton conductors. The conductivity of the sulfonated 1-MeL40-S with methyl group corresponds to 2.29x10(-1) S cm(-1) at 80 degrees C and 90 % relative humidity, remarkably an 22100-fold enhancement over the nonsulfonated 1-MeL40. 1-MeL40-S maintains long-term conductivity for one month. We confirm that this synthetic method is generalized to the extended version POPs, 2-MeL40-S and 3-MeL40-S. In particular, the conductivities of the POPs compete with those of top-level porous organic conductors. Moreover, the activation energy of the POPs is lower than that of the top-performing materials. This study demonstrates that systematic alteration of the electronic effects of substituents is a useful route to improve the conductivity and long-term durability of proton-conducting materials.
키워드
- 제목
- Electronic Effect-Modulated Enhancements of Proton Conductivity in Porous Organic Polymers
- 저자
- Kim, Sun Young; Kang, Minjung; Kang, Dong Won; Kim, Hyojin; Choe, Jong Hyeak; Yun, Hongryeol; Hong, Chang Seop
- 발행일
- 2023-01-09
- 유형
- Article
- 권
- 62
- 호
- 2