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Zn+-O- dual-spin surface states formation by modification of ZnO nanoparticles with diboron compounds.

08:00 EDT 14th August 2019 | BioPortfolio

Summary of "Zn+-O- dual-spin surface states formation by modification of ZnO nanoparticles with diboron compounds."

ZnO semiconductor oxides are versatile functional materials that used in photoelectronic, catalysis, sensing, etc. The Zn+-O- surface electronic states of semiconductor oxides were formed on ZnO's surface by Zn 4s, O 2p orbitals coupling with the diboron compound's B 2p orbitals. The formation of spin coupled surface states was based on the spin orbit interaction on the interface, which has not been reported before. It shows that the semiconductor oxide's spin surface states can be modulated by regulating surface orbital energy. The Zn+-O- surface electronic states were confirmed by ESR results, which may help expand fundamental research on spintronics modulation and quantum transport.

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This article was published in the following journal.

Name: Langmuir : the ACS journal of surfaces and colloids
ISSN: 1520-5827
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