ABSTRACT Despite the relatively simple stoichiometry and structure of VO2, many questions regarding the nature of its famous metal-insulator transition (MIT) remain unresolved. This is in part due to the prevailing use of polycrystalline film samples and the limited spatial resolution in most studies, hindering access to and control of the complex phase behavior and its inevitable spatial inhomogeneities. Here, we investigate the MIT and associated nanodomain formation in individual VO2 microcrystals subject to substrate stress. We employ symmetry-selective polarization Raman spectroscopy to identify crystals that are strain-stabilized in either the monoclinic M1 or M2 insulating phase at room-temperature. Raman measurements are further use...
Abstract Phase competition in transition metal oxides has attracted remarkable interest for fundamen...
VO2 single crystals with unprecedented quality, exhibiting a first-order metal-insulator transition ...
The metal to insulator transition (MIT) of strongly correlated materials is subject to strong lattic...
Detailed temperature-dependent transport, optical microscopy, and synchrotron-based polychromatic x-...
International audienceStructural and electronic phase transitions behavior of two polycrystalline VO...
A Metal-insulator transition (MIT) is the ability of some materials to change between metal and insu...
Vanadium dioxide (VO2) material, known for changing physical properties due to metal-insulator trans...
International audienceWe report on the crystallographic phases and their epitaxial relationships obs...
In VO2, the explicit origin of the insulator-to-metal transition is still disputable between Peierls...
ABSTRACT: We studied the insulator-metal transition (IMT) in single-domain, single crystalline vanad...
We have systematically studied a variety of vanadium dioxide (VO2) crystalline forms, including bulk...
The salient feature of the familiar structural transition accompanying the thermally-driven metal-in...
We use resonant soft X-ray holography to image the insulator−metal phase transition in vanadium diox...
We report in situ Raman scattering studies of electrochemically top gated VO2 thin film to address m...
We report in situ Raman scattering studies of electrochemically top gated VO2 thin film to address m...
Abstract Phase competition in transition metal oxides has attracted remarkable interest for fundamen...
VO2 single crystals with unprecedented quality, exhibiting a first-order metal-insulator transition ...
The metal to insulator transition (MIT) of strongly correlated materials is subject to strong lattic...
Detailed temperature-dependent transport, optical microscopy, and synchrotron-based polychromatic x-...
International audienceStructural and electronic phase transitions behavior of two polycrystalline VO...
A Metal-insulator transition (MIT) is the ability of some materials to change between metal and insu...
Vanadium dioxide (VO2) material, known for changing physical properties due to metal-insulator trans...
International audienceWe report on the crystallographic phases and their epitaxial relationships obs...
In VO2, the explicit origin of the insulator-to-metal transition is still disputable between Peierls...
ABSTRACT: We studied the insulator-metal transition (IMT) in single-domain, single crystalline vanad...
We have systematically studied a variety of vanadium dioxide (VO2) crystalline forms, including bulk...
The salient feature of the familiar structural transition accompanying the thermally-driven metal-in...
We use resonant soft X-ray holography to image the insulator−metal phase transition in vanadium diox...
We report in situ Raman scattering studies of electrochemically top gated VO2 thin film to address m...
We report in situ Raman scattering studies of electrochemically top gated VO2 thin film to address m...
Abstract Phase competition in transition metal oxides has attracted remarkable interest for fundamen...
VO2 single crystals with unprecedented quality, exhibiting a first-order metal-insulator transition ...
The metal to insulator transition (MIT) of strongly correlated materials is subject to strong lattic...