Javascript must be enabled to continue!
Epitaxial stabilization and phase instability of VO2 polymorphs
View through CrossRef
AbstractThe VO2 polymorphs, i.e., VO2(A), VO2(B), VO2(M1) and VO2(R), have a wide spectrum of functionalities useful for many potential applications in information and energy technologies. However, synthesis of phase pure materials, especially in thin film forms, has been a challenging task due to the fact that the VO2 polymorphs are closely related to each other in a thermodynamic framework. Here, we report epitaxial stabilization of the VO2 polymorphs to synthesize high quality single crystalline thin films and study the phase stability of these metastable materials. We selectively deposit all the phases on various perovskite substrates with different crystallographic orientations. By investigating the phase instability, phonon modes and transport behaviours, not only do we find distinctively contrasting physical properties of the VO2 polymorphs, but that the polymorphs can be on the verge of phase transitions when heated as low as ~400 °C. Our successful epitaxy of both VO2(A) and VO2(B) phases, which are rarely studied due to the lack of phase pure materials, will open the door to the fundamental studies of VO2 polymorphs for potential applications in advanced electronic and energy devices.
Springer Science and Business Media LLC
Title: Epitaxial stabilization and phase instability of VO2 polymorphs
Description:
AbstractThe VO2 polymorphs, i.
e.
, VO2(A), VO2(B), VO2(M1) and VO2(R), have a wide spectrum of functionalities useful for many potential applications in information and energy technologies.
However, synthesis of phase pure materials, especially in thin film forms, has been a challenging task due to the fact that the VO2 polymorphs are closely related to each other in a thermodynamic framework.
Here, we report epitaxial stabilization of the VO2 polymorphs to synthesize high quality single crystalline thin films and study the phase stability of these metastable materials.
We selectively deposit all the phases on various perovskite substrates with different crystallographic orientations.
By investigating the phase instability, phonon modes and transport behaviours, not only do we find distinctively contrasting physical properties of the VO2 polymorphs, but that the polymorphs can be on the verge of phase transitions when heated as low as ~400 °C.
Our successful epitaxy of both VO2(A) and VO2(B) phases, which are rarely studied due to the lack of phase pure materials, will open the door to the fundamental studies of VO2 polymorphs for potential applications in advanced electronic and energy devices.
Related Results
Bilayer vanadium dioxide thin film with elevated transition temperatures and high resistance switching
Bilayer vanadium dioxide thin film with elevated transition temperatures and high resistance switching
Despite widespread interest in the phase-change applications of vanadium dioxide (VO2), the fabrication of high-quality VO2 thin films with elevated transition temperatures (TIMT) ...
Infrared modulator based on AZO/VO2/AZO sandwiched structure due to electric field induced phase transition
Infrared modulator based on AZO/VO2/AZO sandwiched structure due to electric field induced phase transition
Electric field induced semiconductor-metal transition characteristics of VO2 indicate extensive application prospects in smart window,storage device,intelligent radiator,signal gen...
Healing of oxygen defects on VO2 surface: F4TCNQ adsorption
Healing of oxygen defects on VO2 surface: F4TCNQ adsorption
Oxygen-defect vacancies that routinely exist in wet production of VO2 material or on the surface of VO2 single crystal after surface treatment have significant influence on the met...
VO2(B) conversion to VO2(A) and VO2(M) and their oxidation resistance and optical switching properties
VO2(B) conversion to VO2(A) and VO2(M) and their oxidation resistance and optical switching properties
Abstract
Vanadium dioxide VO2 has been paid in recent years increasing attention because of its various applications, however, its oxidation resistance properties in...
Study of Maximum Oxygen Uptake (VO2 Max) Value in Indorunners Running Community of Malang and Surabaya City
Study of Maximum Oxygen Uptake (VO2 Max) Value in Indorunners Running Community of Malang and Surabaya City
The aim of this research is, to determine the value of VO2 max which owned by the members of Indorunners community in Malang and Surabaya City. Besides, the high and low value of V...
Effect of W addition on the electrical switching of VO2 thin films
Effect of W addition on the electrical switching of VO2 thin films
Vanadium Oxide has been a frontrunner in the field of oxide electronics because of its metal-insulator transition (MIT). The interplay of different structures of VO2 has played a c...
Tuning of thermally induced first-order semiconductor-to-metal transition in pulsed laser deposited VO2 epitaxial thin films
Tuning of thermally induced first-order semiconductor-to-metal transition in pulsed laser deposited VO2 epitaxial thin films
Vanadium oxide (VO2) thin films have drawn significant research and development interest in recent years because of their intriguing physical origin and wide range of functionaliti...
Performance of the 2-minute stand up test and the association with peak oxygen consumption in cardiopathes
Performance of the 2-minute stand up test and the association with peak oxygen consumption in cardiopathes
Abstract
Funding Acknowledgements
Type of funding sources: Foundation. Main funding source(s): Fundo de amparo a pesquisa do est...

