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用于高温聚合物电解质膜燃料电池铂阳极的质子传导聚合物包覆碳纳米纤维垫

Proton-Conducting Polymer-Coated Carbon Nanofiber Mats for Pt-Anodes of High-Temperature Polymer-Electrolyte Membrane Fuel Cell.

作者信息

Skupov Kirill M, Ponomarev Igor I, Vtyurina Elizaveta S, Volkova Yulia A, Ponomarev Ivan I, Zhigalina Olga M, Khmelenin Dmitry N, Cherkovskiy Evgeny N, Modestov Alexander D

机构信息

A.N. Nesmeyanov Institute of Organoelement Compounds of Russian Academy of Sciences, Vavilova St. 28, bld. 1, 119334 Moscow, Russia.

A.V. Shubnikov Institute of Crystallography of Federal Scientific Research Centre "Crystallography and Photonics" of Russian Academy of Sciences, Leninsky Av. 59, 119333 Moscow, Russia.

出版信息

Membranes (Basel). 2023 Apr 29;13(5):479. doi: 10.3390/membranes13050479.

Abstract

High-temperature polymer-electrolyte membrane fuel cells (HT-PEM FC) are a very important type of fuel cell since they operate at 150-200 °C, allowing the use of hydrogen contaminated with CO. However, the need to improve stability and other properties of gas diffusion electrodes still hinders their distribution. Anodes based on a mat (self-supporting entire non-woven nanofiber material) of carbon nanofibers (CNF) were prepared by the electrospinning method from a polyacrylonitrile solution followed by thermal stabilization and pyrolysis of the mat. To improve their proton conductivity, Zr salt was introduced into the electrospinning solution. As a result, after subsequent deposition of Pt-nanoparticles, Zr-containing composite anodes were obtained. To improve the proton conductivity of the nanofiber surface of the composite anode and reach HT-PEMFC better performance, dilute solutions of Nafion, a polymer of intrinsic microporosity (PIM-1) and N-ethyl phosphonated polybenzimidazole (PBI-OPhT-P) were used to coat the CNF surface for the first time. These anodes were studied by electron microscopy and tested in membrane-electrode assembly for H/air HT-PEMFC. The use of CNF anodes coated with PBI-OPhT-P has been shown to improve the HT-PEMFC performance.

摘要

高温聚合物电解质膜燃料电池(HT-PEM FC)是一种非常重要的燃料电池类型,因为它们在150-200°C的温度下运行,允许使用含有一氧化碳的氢气。然而,提高气体扩散电极的稳定性和其他性能的需求仍然阻碍了它们的推广。基于碳纳米纤维(CNF)毡(自支撑的全非织造纳米纤维材料)的阳极是通过静电纺丝法从聚丙烯腈溶液制备的,随后对毡进行热稳定化和热解。为了提高其质子传导率,将锆盐引入静电纺丝溶液中。结果,在随后沉积铂纳米颗粒后,得到了含锆复合阳极。为了提高复合阳极纳米纤维表面的质子传导率并实现HT-PEMFC更好的性能,首次使用了全氟磺酸、固有微孔聚合物(PIM-1)和N-乙基膦酸化聚苯并咪唑(PBI-OPhT-P)的稀溶液来涂覆CNF表面。通过电子显微镜对这些阳极进行了研究,并在H/空气HT-PEMFC的膜电极组件中进行了测试。结果表明,使用涂覆有PBI-OPhT-P的CNF阳极可提高HT-PEMFC的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b55/10224481/740cbf24da02/membranes-13-00479-g001.jpg

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