Flat-surface-assisted and self-regulated oxidation resistance of Cu(111).
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ABSTRACT: Oxidation can deteriorate the properties of copper that are critical for its use, particularly in the semiconductor industry and electro-optics applications1-7. This has prompted numerous studies exploring copper oxidation and possible passivation strategies8. In situ observations have, for example, shown that oxidation involves stepped surfaces: Cu2O growth occurs on flat surfaces as a result of Cu adatoms detaching from steps and diffusing across terraces9-11. But even though this mechanism explains why single-crystalline copper is more resistant to oxidation than polycrystalline copper, the fact that flat copper surfaces can be free of oxidation has not been explored further. Here we report the fabrication of copper thin films that are semi-pe
SUBMITTER: Kim SJ
PROVIDER: S-EPMC8930770 | biostudies-literature | 2022 Mar
REPOSITORIES: biostudies-literature
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