基于聚咔唑的阴离子交换膜,含有用于碱性燃料电池的柔性侧链连接的哌啶垂体

IF 8.4 1区 工程技术 Q1 ENGINEERING, CHEMICAL Journal of Membrane Science Pub Date : 2024-07-01 DOI:10.1016/j.memsci.2024.123031
Yuanlong Wu , Jiaran Song , Tianxiang Zhao , Yunji Xie , Di Liu , Le Wang , Genyu Wei , Haidong Ma , Zhe Wang
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引用次数: 0

摘要

近年来,阴离子交换膜(AEM)技术的进步显著提高了阴离子交换膜燃料电池(AEMFC)的整体性能。然而,阴离子交换膜有限的碱稳定性和较低的离子传导性等问题已变得十分明显。本研究以分子设计为重点,开发了一系列具有柔性侧链的聚咔唑基 AEM,命名为 PCP-n("n "表示新合成单体 BHC 在咔唑衍生物中的摩尔比)。长柔性侧链的整合促进了链的移动和哌啶阳离子的聚集,从而导致 PCP-n 膜内部出现明显的亲水/疏水纳米级相分离。此外,PCP-n 膜还显示出有效的水管理能力,PCP-90 膜的吸水率为 32%,在 80 °C 时的面内膨胀率低于 20%。基于咔唑衍生物的无醚主链和高度稳定的哌啶阳离子基团使 PCP-n 膜具有优异的耐碱性。在 80 °C 的 2 M KOH 中浸泡 1500 小时后,PCP-90 膜成功地保持了 79.92% 的原始离子导电率。由于 PCP-90 膜具有很强的热稳定性和机械强度,因此在膜电极组装和单细胞性能测试中,其峰值功率密度达到 275.64 mW cm-2,开路电压达到 0.98 V。总之,PCP-n 膜令人印象深刻的综合性能表明其应用前景广阔。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Polycarbazole-based anion exchange membranes containing flexible side-chain linked piperidine pendants for alkaline fuel cells

In recent years, advancements in anion exchange membranes (AEMs) have notably enhanced the overall performance of anion exchange membrane fuel cells (AEMFCs). However, issues like limited alkali stability and low ionic conductivity of AEMs have become apparent. In this study, focusing on molecular design, a series of polycarbazole-based AEMs with flexible side chains, named PCP-n (where ‘n’ denotes the molar ratio of the newly synthesized monomer BHC in carbazole derivatives), were developed. The integration of long flexible side chains fosters chain movement and the clustering of piperidine cations, leading to distinct hydrophilic/hydrophobic nanoscale phase separation within the PCP-n membranes. Moreover, the PCP-n membranes demonstrate effective water management capabilities, with the PCP-90 membrane displaying a 32 % water uptake and an in-plane swelling ratio below 20 % at 80 °C. The introduction of an ether-free main chain based on carbazole derivatives along with the highly stable piperidine cationic group endows the PCP-n membranes with exceptional alkali resistance. Following a 1500-h immersion in 2 M KOH at 80 °C, the PCP-90 membrane successfully retains 79.92 % of its original ionic conductivity. Given its substantial thermal stability and mechanical strength, the PCP-90 membrane underwent testing in membrane electrode assembly and single-cell performance, achieving a notable peak power density of 275.64 mW cm−2 and an open-circuit voltage of 0.98 V. Overall, the impressive comprehensive performance of the PCP-n membranes suggests a promising future for their application.

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来源期刊
Journal of Membrane Science
Journal of Membrane Science 工程技术-高分子科学
CiteScore
17.10
自引率
17.90%
发文量
1031
审稿时长
2.5 months
期刊介绍: The Journal of Membrane Science is a publication that focuses on membrane systems and is aimed at academic and industrial chemists, chemical engineers, materials scientists, and membranologists. It publishes original research and reviews on various aspects of membrane transport, membrane formation/structure, fouling, module/process design, and processes/applications. The journal primarily focuses on the structure, function, and performance of non-biological membranes but also includes papers that relate to biological membranes. The Journal of Membrane Science publishes Full Text Papers, State-of-the-Art Reviews, Letters to the Editor, and Perspectives.
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