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A Polyketone-based Anion Exchange Membrane for Electrochemical Applications: Synthesis and Characterization

机译:电化学应用的基于聚酮的阴离子交换膜:合成与表征

摘要

An anion exchange membrane (AEM) was made with a modified polyketone (PK). AEMs of polyamines were prepared in a three-step procedure: (I) PK synthesis using ethylene and carbon monoxide, supported by a Pd catalyst, followed by the introduction of 1,2-diaminopropane to yield the polymeric amines; (II) solvent casting of the modified PK with a low degree of amination; (III) iodomethylation to form the AEM (PK-PDAPm(I)), followed by ion exchange with KOH (PK-PDAPm(OH)).udThe structure of the modified polyketone was characterized using FT-IR, and UV–vis spectroscopy, demonstrating the successful introduction of amine in the PK. The conductivity of the AEM was studied using broadband electric spectroscopy (BES) in the temperature range from −100 to 120 °C: the highest value of 9 × 10−4 S·cm−1 was reached at 120 °C for the ionic conductivity of PK-PDAPm(I), followed by PK-PDAPm(OH) with values of the same order of magnitude (10−4 S·cm−1). Thermogravimetry showed that the material is thermally stable up to 200 °C.
机译:用改性的聚酮(PK)制成阴离子交换膜(AEM)。多胺的AEMs可通过三步过程制备:(I)在Pd催化剂的支持下,使用乙烯和一氧化碳进行PK合成,然后引入1,2-二氨基丙烷以生成聚合物胺。 (II)低氨基化度的改性PK的溶剂浇铸; (III)碘甲基化形成AEM(PK-PDAPm(I)),然后与KOH(PK-PDAPm(OH))进行离子交换。 ud使用FT-IR和UV-vis对改性聚酮的结构进行了表征光谱学,证明在PK中成功引入了胺。使用宽带电子光谱(BES)在-100至120°C的温度范围内研究了AEM的电导率:离子电导率在120°C时达到9×10-4 S·cm-1的最大值PK-PDAPm(I),然后是具有相同数量级(10-4 S·cm-1)值的PK-PDAPm(OH)。热重分析表明该材料在高达200°C的温度下具有热稳定性。

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