Enhanced proton conductivity of sulfonated poly

In this paper, sulfonic acid functionalized benzothiazole ionic liquid ([[(C[H.sub.2]).sub.3]S[O.sub.3]HBth] [[H.sub.2]P[O.sub.4]]) and graphene oxide were combined together through the cation-[pi]. The sulfonated poly (ether ether ketone) was doped with ionic liquid-modified GO (IL-GO) to prepare t...

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Veröffentlicht in:Polymer engineering and science 2024-05, Vol.64 (5), p.1946
Hauptverfasser: Qu, Shuguo, Song, Jinxun, Lv, Xueyan, Sun, Lijun, Ding, Luyang, Jin, Guihua, Duan, Jihai, Wang, Weiwen
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Sprache:eng
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Zusammenfassung:In this paper, sulfonic acid functionalized benzothiazole ionic liquid ([[(C[H.sub.2]).sub.3]S[O.sub.3]HBth] [[H.sub.2]P[O.sub.4]]) and graphene oxide were combined together through the cation-[pi]. The sulfonated poly (ether ether ketone) was doped with ionic liquid-modified GO (IL-GO) to prepare the SPEEK/IL-GO composite membrane through the solution casting method. The - S[O.sub.3]H and benzothiazole rings act as both proton acceptors and proton donors during proton transport and can replace the role of water in medium- and high-temperature environments, increasing the proton transport sites to a certain extent and increasing the proton conductivity of the SPEEK/IL-GO composite membrane. The proton conductivity of the SPEEK/IL-GO-2 composite membrane achieved an 18.02 mS/cm at 120[degrees]C, which is 2.43 times higher than that of the pristine SPEEK membrane. This paper provided a method for increasing proton conductivity and limiting IL loss of the SPEEK membrane.
ISSN:0032-3888
DOI:10.1002/pen.26657