학술논문

Reactive Oxidation Induced Stoichiometric Modulation of Multivalent Vanadium Oxides
Document Type
article
Source
Small Science, Vol 4, Iss 4, Pp n/a-n/a (2024)
Subject
multivalent vanadium oxides
phase transitions
reactive oxygen annealing
Materials of engineering and construction. Mechanics of materials
TA401-492
Language
English
ISSN
2688-4046
Abstract
Vanadium oxides, such as V2O3, VO2, and V2O5, have attracted considerable attention because of the fascinating physical properties of each oxidation state. On the other hand, precisely controlling the individual oxidation states is difficult due to the sensitivity of oxygen stoichiometry. This article reports that reactive oxygen annealing (ROA) can systematically change the oxidation state of the vanadium oxide films grown on a c‐Al2O3 substrate compared with typical annealing under O2 environments. Chemical, structural, electronic, and electrical analysis confirms the evolution of the vanadium oxide phases from V2O3 to V2O3/VO2, VO2, VO2/V2O5, and V2O5, showing that the ROA method can control and tune the oxidation state of the highly oxygen‐sensitive multivalent metal oxides.