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燃料电池中的垂直石墨烯增强钛合金双极板

Vertical-Graphene-Reinforced Titanium Alloy Bipolar Plates in Fuel Cells.

作者信息

Yu Feng, Wang Kun, Cui Lingzhi, Wang Shengli, Hou Ming, Xiong Feng, Zou Ruqiang, Gao Peng, Peng Hailin, Liu Zhongfan

机构信息

Center for Nanochemistry (CNC), Beijing Science and Engineering Center for Nanocarbons, Beijing National Laboratory for Molecular Sciences, College of Chemistry and Molecular Engineering, Peking University, Beijing, 100871, P. R. China.

Beijing Graphene Institute (BGI), Beijing, 100095, P. R. China.

出版信息

Adv Mater. 2022 May;34(21):e2110565. doi: 10.1002/adma.202110565. Epub 2022 Apr 25.

DOI:10.1002/adma.202110565
PMID:35357744
Abstract

The bipolar plate (BP) serves as one of the crucial components in proton exchange membrane fuel cells (PEMFCs). Among BP materials, metallic BPs are widely employed due to their outstanding comprehensive properties. However, the interfacial contact resistance (ICR) between BP and gas diffusion layer together with corrosion of metallic BP under acidic operating conditions degrades the performance and stability of PEMFCs. Herein, an approach is proposed for the surface reinforcement of titanium (Ti) alloy BPs, relying on a directly grown vertical graphene (VG) coating via the plasma-enhanced chemical vapor deposition method. Compared with bare Ti alloy, the corrosion rate of VG-coated Ti alloy reduces by 1-2 orders of magnitude in the simulated PEMFC operating environments and ICR decreases by ≈100 times, while its thermal conductivity improves by ≈20% and water contact angle increases by 68.1°. The results can be interpreted that the unique structure of VG enables excellent electrical and thermal conduction in PEMFCs, and the highly hydrophobic VG coating suppresses the penetration of corrosive liquid as well as contributing to water management. This study opens a new opportunity to reinforce metallic surfaces by the robust and versatile VG coating for high-performance electrodes used in energy and catalyst applications.

摘要

双极板(BP)是质子交换膜燃料电池(PEMFC)中的关键部件之一。在双极板材料中,金属双极板因其优异的综合性能而被广泛应用。然而,双极板与气体扩散层之间的界面接触电阻(ICR)以及金属双极板在酸性工作条件下的腐蚀会降低PEMFC的性能和稳定性。在此,提出了一种对钛(Ti)合金双极板进行表面强化的方法,该方法依赖于通过等离子体增强化学气相沉积法直接生长垂直石墨烯(VG)涂层。与裸钛合金相比,在模拟的PEMFC工作环境中,涂覆VG的钛合金的腐蚀速率降低了1 - 2个数量级,ICR降低了约100倍,同时其热导率提高了约20%,水接触角增加了68.1°。这些结果可以解释为,VG的优异导电性和导热性使其在PEMFC中表现出色,并且高度疏水的VG涂层抑制了腐蚀性液体的渗透,同时有助于水管理。这项研究为通过坚固且通用的VG涂层强化金属表面以用于能源和催化剂应用中的高性能电极开辟了新的机会。

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