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A graphene-based microporous layer for proton exchange membrane fuel cells: Characterization and performance comparison

机译:用于质子交换膜燃料电池的基于石墨烯的微孔层:表征和性能比较

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摘要

Water management is a critical issue for proton exchange membrane (PEM) fuel cells, and the use of a microporous layer (MPL) substantially improves the PEM fuel cell performance, reliability and durability through improved water management. In this study, graphene, technically a yet-to-be-developed category of material, is investigated as a potential MPL material, due to its high electrical and thermal conductivity. MPLs made of graphene (G-MPL) have been fabricated and assessed through morphological, microstructural, physical, and electrochemical characterizations and performance testing in a single scaled-up cell. Comparison is also made with MPLs made of a conventional material, Vulcan (V-MPL). The results show that the G-MPL has a unique morphology composed of horizontally packaged graphene flakes that improves water management, in-plane electrical conductivity (up to 2 times), catalyst activity, and platinum (Pt) utilization (up to 10%). The cell with the G-MPL has a better performance than the cell with the V-MPL under both fully (100% RH) and partially (40% RH) humidified conditions, with the peak power densities of 0.98 W cm(-2) and 0.60 W cm(-2), respectively these peak power densities are about 7% and 43% higher than those obtained for the cell with the V-MPL at 100% and 40% RH, respectively. (C) 2018 Elsevier Ltd. All rights reserved.
机译:水管理是质子交换膜(PEM)燃料电池的关键问题,而微孔层(MPL)的使用通过改善水管理大大改善了PEM燃料电池的性能,可靠性和耐久性。在这项研究中,由于石墨烯具有很高的电导率和导热率,因此作为一种潜在的MPL材料,在技术上尚待开发。由石墨烯制成的MPL(G-MPL)已在单个放大的电池中通过形态,微观结构,物理和电化学表征以及性能测试进行了制造和评估。还与由传统材料Vulcan(V-MPL)制成的MPL进行了比较。结果表明,G-MPL具有由水平包装的石墨烯薄片组成的独特形态,可改善水管理,面内电导率(最高2倍),催化剂活性和铂(Pt)利用率(最高10%) 。在完全(100%RH)和部分(40%RH)加湿条件下,具有G-MPL的电池比具有V-MPL的电池具有更好的性能,峰值功率密度为0.98 W cm(-2)和0.60 W cm(-2),这些峰值功率密度分别比在100%和40%RH的V-MPL电池获得的峰值功率密度高约7%和43%。 (C)2018 Elsevier Ltd.保留所有权利。

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