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Thickness-Dependent Band Gap Modification in BaBiO3.


ABSTRACT: The material BaBiO3 is known for its insulating character. However, for thin films, in the ultra-thin limit, metallicity is expected because the oxygen octahedra breathing mode will be suppressed as reported recently. Here, we confirm the influence of the oxygen breathing mode on the size of the band gap. The electronic properties of a BaBiO3 thickness series are studied using in-situ scanning tunneling microscopy. We observe a wide-gap (EG > 1.2 V) to small-gap (EG ≈ 0.07 eV) semiconductor transition as a function of a decreasing BaBiO3 film thickness. However, even for an ultra-thin BaBiO3 film, no metallic state is present. The dependence of the band gap size is found to be coinciding with the intensity of the Raman response of the breathing phonon mode as a function of thickness.

SUBMITTER: Bouwmeester RL 

PROVIDER: S-EPMC8103236 | biostudies-literature | 2021 Mar

REPOSITORIES: biostudies-literature

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Thickness-Dependent Band Gap Modification in BaBiO<sub>3</sub>.

Bouwmeester Rosa Luca RL   Brinkman Alexander A   Sotthewes Kai K  

Nanomaterials (Basel, Switzerland) 20210330 4


The material BaBiO3 is known for its insulating character. However, for thin films, in the ultra-thin limit, metallicity is expected because the oxygen octahedra breathing mode will be suppressed as reported recently. Here, we confirm the influence of the oxygen breathing mode on the size of the band gap. The electronic properties of a BaBiO3 thickness series are studied using in-situ scanning tunneling microscopy. We observe a wide-gap (EG > 1.2 V) to small-gap (EG ≈ 0.07 eV) semiconductor tran  ...[more]

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