Surface Functionalization of TiO2 Nanotubes Modified with a Thin Film of BiFeO3

Author:

Ramazanov Shikhgasan1ORCID,Orudzhev Farid12ORCID,Gajiev Gaji1ORCID

Affiliation:

1. Amirkhanov Institute of Physics, Dagestan Federal Research Center, Russian Academy of Sciences, 367003 Makhachkala, Russia

2. Smart Materials Laboratory, Department of Inorganic Chemistry and Chemical Ecology, Dagestan State University, 367015 Makhachkala, Russia

Abstract

The atomic layer deposition method allows for the production of a thin film with a high aspect ratio on the uneven surface of titanium dioxide nanotubes TiO2(Nt). A modified BiFeO3/TiO2(Nt)/Ti (BFOT) structure with controllable electrical characteristics was obtained. BFOT possesses both ferroelectric and semiconductor properties with nonlinear conductivity dependent on the magnitude and duration of the voltage supply. Analysis of the temperature dependence of charge variation showed leakage currents in the BFOT structure due to the capture and release of charge carriers from defect levels. Surface modification of nanotubes with the multiferroic BiFeO3 allows for the creation of semiconductors with adaptive functional properties.

Funder

Russian Science Foundation

Publisher

MDPI AG

Subject

General Health Professions

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