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基于磷酸化聚乙烯醇/醋酸纤维素的聚电解质膜在直接甲醇燃料电池中的应用:合成、仪器表征及性能测试

Polyelectrolyte membranes based on phosphorylated-PVA/cellulose acetate for direct methanol fuel cell applications: synthesis, instrumental characterization, and performance testing.

作者信息

Khalaf Mahmoud, Saeed Ahmed M, Ali Ahmed I, Kamoun Elbadawy A, Fahmy Alaa

机构信息

Chemistry Department, Faculty of Science, Al-Azhar University, Cairo, Egypt.

Basic Science Department, Faculty of Technology and Education, Helwan University, Saray-El Qoupa, El Sawah Street, Cairo, 11281, Egypt.

出版信息

Sci Rep. 2023 Aug 10;13(1):13011. doi: 10.1038/s41598-023-40035-6.

Abstract

Designing and synthesis of cost-effective and improved methanol permeable and proton conductive membranes are the main challenges for preparation of polymeric electrolyte membrane (PEM). Herein, a cost-effective PEM membrane based on phosphorylated polyvinyl alcohol (PVA)-grafted-cellulose acetate (CA) was prepared by a solution-casting technique. Water and methanol uptakes of phosphorylated PVA/CA membranes were characterized as function with the molar ratio of CA. Additionally, structure and morphology of phosphorylated PVA/CA (Ph-PVA/CA) membranes were verified by FT-IR analysis, SEM investigation. Furthermore, ion exchange capacity (IEC), proton conductivity and methanol permeation of Ph-PVA/CA membranes were examined based on the concentration of OPA basically. The results manifested a perceptible improvement in proton conductivity from 0.035 to 0.05 S/cm at 25 and 70 °C, respectively using 600 μL of OPA, and IEC of 2.1 meq/g using 400 μL of OPA at ambient temperature. On the other hand, methanol permeability (P = 1.08 × 10 cm/s) was lower than Nafion 117 admirably. The optimum OPA concentration was 200 μL according to conductivity measurements (at 10% PVA, 150 μL GA, and CA 7%). Finally, prepared Ph-PVA/CA membranes exhibited enhancement in critical natures such as proton conductivity and IEC combined with its low-cost materials, which make them excellent candidate as PEM for DMFCs application.

摘要

设计并合成具有成本效益且性能更佳的甲醇可渗透和质子传导膜是制备聚合物电解质膜(PEM)的主要挑战。在此,通过溶液浇铸技术制备了一种基于磷酸化聚乙烯醇(PVA)接枝醋酸纤维素(CA)的具有成本效益的PEM膜。磷酸化PVA/CA膜的水和甲醇吸收量被表征为CA摩尔比的函数。此外,通过傅里叶变换红外光谱(FT-IR)分析、扫描电子显微镜(SEM)研究对磷酸化PVA/CA(Ph-PVA/CA)膜的结构和形态进行了验证。此外,基于对苯二甲醛(OPA)的浓度,对Ph-PVA/CA膜的离子交换容量(IEC)、质子传导率和甲醇渗透率进行了检测。结果表明,在25℃和70℃下,分别使用600μL的OPA时,质子传导率从0.035显著提高到0.05 S/cm,在室温下使用400μL的OPA时,IEC为2.1 meq/g。另一方面,甲醇渗透率(P = 1.08×10 cm/s)令人钦佩地低于Nafion 117。根据电导率测量结果(在10% PVA、150μL戊二醛(GA)和7% CA的条件下),最佳OPA浓度为200μL。最后,制备的Ph-PVA/CA膜在质子传导率和IEC等关键性能方面有所提高,同时其材料成本较低,这使其成为直接甲醇燃料电池(DMFC)应用中PEM的极佳候选材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c67/10415303/76905f9944af/41598_2023_40035_Fig1_HTML.jpg

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