Oxygen-ion transport in ceria-based rare-earth high-entropy oxides is controlled by vacancy concentration and local Ce–Ce/Ce–Y hopping environments, with diffusion fastest at intermediate vacancy levels and higher Ce content.
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Ganduglia-Pirovano, A
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Ionic Diffusion Properties of Rare-Earth High-Entropy Oxides from a Machine-Learned Interatomic Potential
Oxygen-ion transport in ceria-based rare-earth high-entropy oxides is controlled by vacancy concentration and local Ce–Ce/Ce–Y hopping environments, with diffusion fastest at intermediate vacancy levels and higher Ce content.