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Fabrication of catalyst coated membrane with screen printing method in a proton exchange membrane fuel cell

机译:质子交换膜燃料电池中丝网印刷的催化剂涂覆膜的制备

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A new proton exchange membrane fuel cell catalyst paste based on direct screen printing was developed to fabricate membrane electrode assembly (MEA) with catalyst coated membrane (CCM) technique. A mixture of cyclohexanol and ethylene glycol was found to be the best solvent for the screen printing catalyst paste in terms of avoiding the swelling of K+ form Nafion (R) membrane and mud-cracking in the catalyst layer during the CCM-MEA fabrication process and improving adhesion between the Nafion (R) membrane and catalyst layers. The CCM-MEAs fabricated with this new catalyst paste with the direct screen printing method showed better or comparable performance with the same or much less catalyst loading compared with that of MEA fabricated with a gas diffusion electrode (GDE) technique. An empirical relationship was provided to determine the amount of solvents used for the catalyst paste. Criteria were also proposed to choose the potentially suitable solvents. The other factors which might affect the performance of the screen printed CCM-MEAs were also examined. The low cell voltage decay rate and the relatively high performance of the screen printed CCM-MEAs demonstrated that the direct screen printing method with the proposed new catalyst paste could be a beneficial complement to the conventional CCM fabrication technique. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:开发了一种基于直接丝网印刷的新型质子交换膜燃料电池催化剂浆料,以利用催化剂涂覆膜(CCM)技术制造膜电极组件(MEA)。发现环己醇和乙二醇的混合物是丝网印刷催化剂浆料的最佳溶剂,因为可以避免在CCM-MEA制造过程中K +形式的Nafion(R)膜溶胀和催化剂层中的泥裂,以及改善Nafion(R)膜和催化剂层之间的粘合力。与使用气体扩散电极(GDE)技术制造的MEA相比,用这种新的催化剂浆料通过直接丝网印刷方法制造的CCM-MEA在相同或更少的催化剂负载下表现出更好或相当的性能。提供了经验关系以确定用于催化剂浆料的溶剂的量。还提出了选择可能合适的溶剂的标准。还检查了可能影响丝网印刷CCM-MEA性能的其他因素。丝网印刷的CCM-MEA的低电池电压衰减率和相对较高的性能表明,采用建议的新型催化剂浆料的直接丝网印刷方法可能是对传统CCM制造技术的有益补充。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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