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- W2904606976 abstract "The mechanical strain response of nanoporous palladium (npPd) upon electrochemical hydrogenation using an in situ dilatometric technique is investigated. NpPd with an average ligament diameter of approximately 20 nm is produced via electrochemical dealloying. A hydrogen-induced phase transition from PdH β to PdH α is found to enable internal-stress plasticity (or transformation-mismatch plasticity) in nanoporous palladium, which leads to exceptionally high strains without fracture as a result of external forces. The high surface stress in the nanoporous structure in combination with the internal-stress plasticity mechanism leads to a peculiar strain response upon hydrogen sorption and desorption. Critical potentials for the formation of PdH α and PdH β in npPd are determined. The theoretical concepts to assess the plastic strain response of nanoporous samples are elucidated, taking into account characteristics of structure and deformation mechanism." @default.
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- W2904606976 date "2018-12-10" @default.
- W2904606976 modified "2023-10-12" @default.
- W2904606976 title "Hydrogen-induced plasticity in nanoporous palladium" @default.
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- W2904606976 doi "https://doi.org/10.3762/bjnano.9.280" @default.
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