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Roles of a strain relaxation and an oxygen vacancy on nanoscale inhomogeneities in VO2 thin film

Title
Roles of a strain relaxation and an oxygen vacancy on nanoscale inhomogeneities in VO2 thin film
Alternative Title
Roles of a strain relaxation and an oxygen vacancy on nanoscale inhomogeneities in VO2 thin film
Author(s)
Kim, M.S.Park, S.H.Choi, SongheeKim, J.Lee, K.H.Noh, S.Y.Chae, B.N.Lee, ShinbuhmKim, B.J.Lee, J.S.
Issued Date
2023-02
Citation
Current Applied Physics, v.46, pp.40 - 45
Type
Article
Author Keywords
VO2Insulator-metal transitionNano infrared imagingStrainOxygen vacancy
Keywords
TRANSITION
ISSN
1567-1739
Abstract
We investigated structural and electronic inhomogeneities in a VO2 thin film grown on a (001)-oriented TiO2 substrate by exploiting nano-scale and macroscopic probing techniques. A compressive strain along the out-of-plane direction becomes additionally relaxed via microcracks which form a micron-sized rectangular pattern. A large inhomogeneity in the dielectric response is observed near the crack, and this signifies a strong coupling between electronic and lattice degrees of freedom. Interestingly, the strong inhomogeneity is observed also inside of the rectangular pattern, and it shows a gradient along one crystalline axis. We attribute such peculiar inhomogeneity observed in a relatively large length scale possibly to a combined effect of the strain relaxation and an oxygen vacancy distribution. As the nano-scale inhomogeneities in structural and electronic properties will eventually determine macroscopic responsivities, this work can be a good guide in designing VO2 thin films with appropriate controls of the strain and the chemical composition to realize better functionalities. © 2022
URI
http://hdl.handle.net/20.500.11750/17368
DOI
10.1016/j.cap.2022.11.012
Publisher
Elsevier
Related Researcher
  • 이신범 Lee, Shinbuhm
  • Research Interests Multifunctional films; Experimental condensed matter physics
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Appears in Collections:
Department of Physics and Chemistry Multifunctional films and nanostructures Lab 1. Journal Articles

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