Columnar Niobium Oxide Nanostructures: Mechanism of Formation, Microstructure, and Electrophysical Properties


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Abstract

The morphology and microstructure of columnar niobium oxide nanostructures are studied and the dependences of their morphological sizes on anodizing voltages (100–450 V) and anodic alumina pore diameters (40–150 nm) are established. The features of ion transport during local anodization of niobium are studied and the transport numbers of electrolyte anions and niobium cations are calculated; a mechanism of formation and growth is proposed and the phase composition and electrophysical properties of columnar nanostructures are studied.

About the authors

G. G. Gorokh

Belarusian State University of Informatics and Radioelectronics

Author for correspondence.
Email: gorokh@bsuir.by
Belarus, Minsk, 220113

A. N. Pligovka

Belarusian State University of Informatics and Radioelectronics

Email: gorokh@bsuir.by
Belarus, Minsk, 220113

A. A. Lozovenko

Belarusian State University of Informatics and Radioelectronics

Email: gorokh@bsuir.by
Belarus, Minsk, 220113

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