Phosphorus-Induced Dual-Sites and High-Index PtCu (3 1 1) crystal planes for modifying oxygen reduction pathway
Author:
Publisher
Elsevier BV
Subject
Surfaces, Coatings and Films,Condensed Matter Physics,Surfaces and Interfaces,General Physics and Astronomy,General Chemistry
Reference54 articles.
1. A trade-off between ligand and strain effects optimizes the oxygen reduction activity of Pt alloys;Kluge;Energ. Environ. Sci.,2022
2. Modeling Anion Poisoning during Oxygen Reduction on Pt Near-Surface Alloys;Petersen;ACS Catal.,2023
3. Molecular Insight of the Critical Role of Ni in Pt-Based Nanocatalysts for Improving the Oxygen Reduction Reaction Probed Using an In Situ SERS Borrowing Strategy;Ze;J Am Chem Soc,2021
4. Copper-involved highly efficient oxygen reduction reaction in both alkaline and acidic media;Yang;Chem. Eng. J.,2022
5. Doping-Modulated Strain Enhancing the Phosphate Tolerance on PtFe Alloys for High-Temperature Proton Exchange Membrane Fuel Cells;Li;Adv. Funct. Mater.,2022
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1. Electrodeposition in one step: Synthesizing Ir–Co tetradecahedral nanoparticles with high-index (311) crystal planes for enhanced catalytic activity in alkaline hydrogen evolution reaction;Journal of Power Sources;2024-09
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3. P-doping modulates the local electronic structure of Pt atoms to enhance intrinsic ORR activity;Molecular Catalysis;2024-03
4. Optical properties of inverted type-I InP quantum dots with near-infrared emission;Journal of Luminescence;2024-01
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