Effect of Ionomer Content in Anode and Cathode Catalyst Layers on Direct Methanol Fuel Cell Performance
Author:
Publisher
Wiley
Subject
Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment
Reference19 articles.
1. Thin-film catalyst layers for polymer electrolyte fuel cell electrodes
2. High Performance Direct Methanol Polymer Electrolyte Fuel Cells
3. Catalyst layer in PEMFC electrodes—Fabrication, characterisation and analysis
4. Measurements of proton conductivity in the active layer of PEM fuel cell gas diffusion electrodes
5. Characterization of Ionic Conductivity Profiles within Proton Exchange Membrane Fuel Cell Gas Diffusion Electrodes by Impedance Spectroscopy
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1. Impact of catalyst loading, ionomer content, and carbon support on the performance of direct isopropanol fuel cells;Journal of Power Sources Advances;2021-08
2. Constructing a graphene-contained layer in anode to improve the performance of direct methanol fuel cells using high-concentration fuel;International Journal of Green Energy;2020-12-27
3. Improving cell performance and alleviating performance degradation by constructing a novel structure of membrane electrode assembly (MEA) of DMFCs;International Journal of Hydrogen Energy;2019-12
4. Platinum utilization in proton exchange membrane fuel cell and direct methanol fuel cell - Review;Journal of Electrochemical Science and Engineering;2019-07-23
5. Effect of the Cathode Catalyst Layer Thickness on the Performance in Direct Methanol Fuel Cells;Electroanalysis;2019-01-17
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