Atomic-Scale Mechanisms of Electrochemical Pt Dissolution
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Schematic of electrochemical Ostwald mechanism: a) two isolated Pt
Relationships between Atomic Level Surface Structure and Stability/Activity of Platinum Surface Atoms in Aqueous Environments
Resolving the nanoparticles' structure-property relationships at the atomic level: a study of Pt-based electrocatalysts - ScienceDirect
Electrochemical oxidation of Pt(111) beyond the place-exchange model - ScienceDirect
Dynamics of electrochemical Pt dissolution at atomic and molecular levels - ScienceDirect
Atomic-Scale Mechanisms of Electrochemical Pt Dissolution
Atomic-scale modeling of the dissolution of oxidized platinum nanoparticles in an explicit water environment - Journal of Materials Chemistry A (RSC Publishing) DOI:10.1039/D2TA09152F
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Simplified representation of suggested degradation mechanisms for
Scientists get atomistic picture of platinum catalyst degradation
Structure dependency of the atomic-scale mechanisms of platinum electro-oxidation and dissolution
Stability challenges of carbon-supported Pt-nanoalloys as fuel cell oxygen reduction reaction electrocatalysts - Chemical Communications (RSC Publishing) DOI:10.1039/D2CC05377B
Acid anion electrolyte effects on platinum for oxygen and hydrogen electrocatalysis
Structure dependency of the atomic-scale mechanisms of platinum electro-oxidation and dissolution
Electrochemical oxidation of Pt(111) beyond the place-exchange model - ScienceDirect
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