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Combined impact of microstructure and mechanical stress on the electrical resistivity of PdHc thin films

โœ Scribed by Stefan Wagner; Astrid Pundt


Publisher
Elsevier Science
Year
2011
Tongue
English
Weight
718 KB
Volume
59
Category
Article
ISSN
1359-6454

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โœฆ Synopsis


Palladium hydrogen thin films are used as a model system to investigate the impact of microstructure and mechanical stress release on the electrical resistivity of thin film metals and alloys that undergo structural phase transitions. The results are compared with bulk resistivity models. Nanocrystalline, multi-oriented and epitaxial films are investigated, yielding initial terminal resistivities q 1 0 = 152-200 X nm. The hydrogen-related resistivity changes of epitaxial films are shown to approach the predicted a-phase bulk increment Dq H /Dc H = 451 X nm, while hydrogen trapping in nanocrystalline films strongly reduces the resistivity response. In the two-phase region, the resistivity is shown to be modified by the steric distribution and geometry of the hydride precipitates, yielding different proportions of serial and parallel conduction. Film delamination from the substrate strongly reduces the resistivity increment due to the Gorsky effect.


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