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首页> 外文期刊>International journal of hydrogen energy >Crosslinked poly(arylene ether sulfone) block copolymers containing quinoxaline crosslinkage and pendant butanesulfonic acid groups as proton exchange membranes
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Crosslinked poly(arylene ether sulfone) block copolymers containing quinoxaline crosslinkage and pendant butanesulfonic acid groups as proton exchange membranes

机译:交联聚(亚芳基醚砜)嵌段含喹喔啉交联剂和侧丁糖磺酸组作为质子交换膜的共聚物

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摘要

Crosslinkable poly (arylene ether sulfone) block copolymers (bSPAES (x/y)) containing pendant butanesulfonic acid and ethanedione groups were prepared from a new side-chain difluoro aromatic monomer 1-(2,6-difluorophenyl)-2-(3,5-dimethoxyphenyl)-1,2-ethanedione via block copolycondensation, demethylation, and further nucleophilic substitution of 1,4-butane sultone. Meanwhile, quinoxaline-based crosslinked block copolymers (C-bSPAES (x/y)) were obtained via cyclocondensation. The corresponding block copolymer membranes have high mechanical properties and anisotropic membrane swelling for either crosslinked or uncrosslinked ones. bSPAES (5/10) with ion exchange capacity (IEC) of 2.05 mequiv. g~(-1) has low water uptake (WU) of 59.1% at 80 °C but relatively high conductivity of 225 mS cm~(-1), which is ascribed to its good microphase separation. Meanwhile, the crosslinked C-bSPAES (5/10) with IEC of 1.76 mequiv. g~(-1) exhibits a decreased WU by half, an improved oxidative stability by 200% and a reduced membrane swelling by 40% than the uncrosslinked bSPAES (5/10). The results suggest that quinoxaline-based crosslinking can obviously improve properties of bSPAES (x/y). In addition, even though maximum power density of C-bSPAES (5/10) is lower than that of Nation 212, C-bSPAES (5/10) still has an acceptable good single-cell performance, indicating a possible fuel cell application.
机译:含有侧链丁磺酸和乙酰基基团的可交联聚(亚芳醚砜)嵌段共聚物(BSPAES(X / Y))由新的侧链二氟芳族芳族单体1-(2,6-二氟苯基)-2-(3, 5-二甲氧基苯基)-1,2-乙基通过嵌段共聚,去甲基化和进一步的1,4-丁烷苏酮的亲核取代。同时,通过环碳缩合获得喹喔啉基交联嵌段共聚物(C-BSPAES(X / Y))。相应的嵌段共聚物膜具有高机械性能和各向异性膜溶胀,用于交联或未交联的。 BSPAES(5/10)与离子交换容量(IEC)为2.05 Mequiv。 G〜(-1)在80℃下具有59.1%的低水量(Wu),但相对较高的电导率为225ms cm〜(-1),其归因于其良好的微相分离。同时,交联的C-BSPAE(5/10),IEC为1.76 Mequiv。 G〜(-1)将耐力下降一半,氧化稳定性改善200%,薄膜减少40%,而不是未交联的BSPAES(5/10)。结果表明,基于喹喔啉的交联显然可以改善BSPAES(X / Y)的性质。此外,即使C-BSPAES(5/10)的最大功率密度低于Nation 212的最大功率密度,C-BSPAES(5/10)仍然具有可接受的良好单电池性能,表明可能的燃料电池应用。

著录项

  • 来源
    《International journal of hydrogen energy》 |2020年第46期|25262-25275|共14页
  • 作者单位

    Key Laboratory of Applied Surface and Colloid Chemistry (MOE) Shoanxi Key Laboratory for Advanced Energy Devices Shaanxi Engineering Laboratory for Advanced Energy Technology School of Materials Science and Engineering Shaanxi Normal University Xi'an 710119 PR China;

    Key Laboratory of Applied Surface and Colloid Chemistry (MOE) Shoanxi Key Laboratory for Advanced Energy Devices Shaanxi Engineering Laboratory for Advanced Energy Technology School of Materials Science and Engineering Shaanxi Normal University Xi'an 710119 PR China;

    Key Laboratory of Applied Surface and Colloid Chemistry (MOE) Shoanxi Key Laboratory for Advanced Energy Devices Shaanxi Engineering Laboratory for Advanced Energy Technology School of Materials Science and Engineering Shaanxi Normal University Xi'an 710119 PR China;

    Key Laboratory of Applied Surface and Colloid Chemistry (MOE) Shoanxi Key Laboratory for Advanced Energy Devices Shaanxi Engineering Laboratory for Advanced Energy Technology School of Materials Science and Engineering Shaanxi Normal University Xi'an 710119 PR China;

    Key Laboratory of Applied Surface and Colloid Chemistry (MOE) Shoanxi Key Laboratory for Advanced Energy Devices Shaanxi Engineering Laboratory for Advanced Energy Technology School of Materials Science and Engineering Shaanxi Normal University Xi'an 710119 PR China;

    Key Laboratory of Applied Surface and Colloid Chemistry (MOE) Shoanxi Key Laboratory for Advanced Energy Devices Shaanxi Engineering Laboratory for Advanced Energy Technology School of Materials Science and Engineering Shaanxi Normal University Xi'an 710119 PR China;

    Key Laboratory of Applied Surface and Colloid Chemistry (MOE) Shoanxi Key Laboratory for Advanced Energy Devices Shaanxi Engineering Laboratory for Advanced Energy Technology School of Materials Science and Engineering Shaanxi Normal University Xi'an 710119 PR China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Crosslinkable poly (arylene ether; sulfone) block copolymer; Pendant butanesulfonic acid; Quinoxaline-based crosslinking; Proton conductivity; Fuel cell performance; Microphase separation;

    机译:可交联聚(亚芳基醚;砜)嵌段共聚物;悬浮丁磺酸;基于喹喔啉的交联;质子电导率;燃料电池性能;缩放分离;

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