Effect of tunable composition-shape of bio-inspired Pt NPs electrocatalyst in direct methanol fuel cell: Process optimization and kinetic studies
Author:
Funder
Universiti Kebangsaan Malaysia
Sunway University
Kementerian Pendidikan Malaysia
Publisher
Elsevier BV
Reference66 articles.
1. Novel anodic catalyst support for direct methanol fuel cell : characterizations and single-cell performances;Abdullah;Nanoscale Res. Lett.,2018
2. Optimization of electrocatalyst performance of platinum–ruthenium induced with MXene by response surface methodology for clean energy application;Abdullah;J. Clean. Prod.,2020
3. Investigation of methanol oxidation on a highly active and stable Pt-Sn electrocatalyst supported on carbon–polyaniline composite for application in a passive direct methanol fuel cell;Amani;Mater. Res. Bull.,2015
4. Effect of preparation conditions on the performance of nano PtCuO/C electrocatalysts for methanol electro-oxidation;Amin;Int. J. Hydrogen Energy,2012
5. Electrooxidation of methanol on platinum bonded to the solid polymer electrolyte, Nafion;Aramata;J. Appl. Electrochem.,1988
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