Lattice-strained Pt nanoparticles anchored on petroleum vacuum residue derived N-doped porous carbon as highly active and durable cathode catalysts for PEMFCs
Author:
Publisher
Elsevier BV
Subject
Energy Engineering and Power Technology,Condensed Matter Physics,Fuel Technology,Renewable Energy, Sustainability and the Environment
Reference49 articles.
1. Ultralow Pt doped on N-based carbon as a promising electrocatalyst for high-temperature proton exchange membrane fuel cells;Zhang;ACS Appl Energy Mater,2021
2. The priority and challenge of high-power performance of low-platinum proton-exchange membrane fuel cells;Kongkanand;J Phys Chem Lett,2016
3. Improved durability of Pt catalyst supported on N-doped mesoporous graphitized carbon for oxygen reduction reaction in polymer electrolyte membrane fuel cells;Jung;Carbon,2017
4. N, P, and S tri-doped holey carbon as an efficient electrocatalyst for oxygen reduction in whole pH range for fuel cell and zinc-air batteries;Long;Carbon,2021
5. A comprehensive review of Pt electrocatalysts for the oxygen reduction reaction: nanostructure, activity, mechanism and carbon support in PEM fuel cells;Sui;J Mater Chem,2017
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