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Effects of thickness and hydrophobicity of double microporous layer on the performance in proton exchange membrane fuel cells
Authors:Guangyi Lin  Shouyi Liu  Siyuan Qu  Guangkai Qu  Tianya Li  Zhenning Liang  Yafei Hu  Fumin Liu
Affiliation:1. College of Mechanical and Electric Engineering, Qingdao University of Science and Technology, Qingdao, China;2. College of Mechanical and Electric Engineering, Beijing University of Chemical Technology, Beijing, China
Abstract:In this paper, a multi-layer gas diffusion layer (GDL) is designed. The GDL consists of a single carbon paper backing layer and dual microporous layers (MPLs). Moreover, the effects of thickness and hydrophobicity of double MPL on the performance of proton exchange membrane fuel cells are investigated. From the test results of the water contact angle, conductivity, pore size distribution, and the polarization curve, it is found that the thickness adjustment increases the number of 0.5 to 7 μm and 20 to 100 μm pores in GDL, which is more conducive to water discharge. Therefore, the thickness adjustment is more favorable to the cell performance under high humidity. While the gradient hydrophobic design makes the MPL of the modified intermediate layer have a certain water-retaining capacity to humidify the reaction gas, which has better effect under low humidity. At last, the results show that the optimized GDL meets a limit power density of 1.772 W/cm2 under 60% humidification and 1.600 W/cm2 under 100% humidification.
Keywords:electrochemistry  membranes  porous materials
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