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      Strong Substrate Influence on Atomic Structure and Properties of Epitaxial VO 2 Thin Films

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          Abstract

          The metal–insulator transition (MIT) observed in vanadium dioxide has been a topic of great research interest for past decades, with the underlying physics yet not fully understood due to the complex electron interactions and structures involved. The ability to understand and tune the MIT behavior is of vital importance from the perspective of both underlying fundamental science as well as potential applications. In this work, scanning transmission electron microscopy (STEM) is used to investigate cross‐section lamella of the VO 2 films deposited using pulsed laser deposition on three substrates: c‐cut sapphire, TiO 2(101) and TiO 2(001). Advanced STEM imaging is performed in which also the oxygen atom columns are resolved. The overall film quality and structures on atomic and nanoscale are linked to the electrical transition characteristics. Relatively poor MIT characteristics are observed on c‐sapphire due to the presence of very small domains with six orientation variants, and on TiO 2 (001) due to the presence of cracks induced by stress relaxation. However, the MIT on TiO 2 (101) behaves favorably, despite similar stress relaxation which, however, only leads to domain boundaries but no cracks.

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          Most cited references60

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          Metal-insulator transitions

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            Femtosecond Structural Dynamics in\({\mathrm{VO}}_{2}\)during an Ultrafast Solid-Solid Phase Transition

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              Oxides Which Show a Metal-to-Insulator Transition at the Neel Temperature

              F. Morin (1959)
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                Author and article information

                Contributors
                Journal
                Advanced Materials Interfaces
                Adv Materials Inter
                Wiley
                2196-7350
                2196-7350
                January 2024
                December 11 2023
                January 2024
                : 11
                : 3
                Affiliations
                [1 ] Zernike Institute for Advanced Materials University of Groningen Nijenborgh 4 Groningen 9747 AG The Netherlands
                [2 ] Instituto de Nanociencia y Materiales de Aragón Universidad de Zaragoza‐CSIC Zaragoza 50018 Spain
                Article
                10.1002/admi.202300639
                5a00b267-c0fc-46f5-be5d-7fddb3064062
                © 2024

                http://creativecommons.org/licenses/by/4.0/

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