We demonstrate that the Mott metal-Insulator transition (MIT) In single crystalline VO2 nanowires Is strongly mediated by surface stress as a consequence of the high surface area to volume ratio of Individual nanowires. Further, we show that the stress-induced antiferromagnetic Mott Insulating phase Is critical in controlling the spatial extent and distribution of the Insulating monoclinic and metallic rutile phases as well as the electrical characteristics of the Mott transition. This affords an understanding of the relationship between the structural phase transition and the Mott MIT.
The metal to insulator transition (MIT) of strongly correlated materials is subject to strong lattic...
The metal-insulator transition (MIT) in strongly correlated oxides has attracted considerable attent...
9The Metal-Insulator transition (MIT) in VO2 is characterized by the complex interplay among lattice...
We demonstrate that the Mott metal-insulator transition (MIT) in single crystalline VO(2) nanowires ...
We demonstrate that the Mott metal-insulator transition (MIT) In single crystalline VO2 nanowires is...
We demonstrate that surface stresses in epitaxially grown VO₂ nanowires (NWs) have a strong effect o...
© 2015 American Chemical Society. There has been long-standing interest in tuning the metal-insulato...
Correlated electron materials can undergo a variety of phase transitions, including superconductivit...
Single-crystal VO2 nanowires were synthesized using atmospheric-pressure and physical vapor depositi...
There has been long-standing interest in tuning the metal–insulator phase transition in vanadium dio...
A Metal-insulator transition (MIT) is the ability of some materials to change between metal and insu...
We investigated external-stress-induced metal-insulator phase transitions in cantilevered single-cry...
We investigated the effect of substrate-induced strain on the metal−insulator transition (MIT) in si...
Vanadium dioxide (VO2) material, known for changing physical properties due to metal-insulator trans...
ABSTRACT Despite the relatively simple stoichiometry and structure of VO2, many questions regarding ...
The metal to insulator transition (MIT) of strongly correlated materials is subject to strong lattic...
The metal-insulator transition (MIT) in strongly correlated oxides has attracted considerable attent...
9The Metal-Insulator transition (MIT) in VO2 is characterized by the complex interplay among lattice...
We demonstrate that the Mott metal-insulator transition (MIT) in single crystalline VO(2) nanowires ...
We demonstrate that the Mott metal-insulator transition (MIT) In single crystalline VO2 nanowires is...
We demonstrate that surface stresses in epitaxially grown VO₂ nanowires (NWs) have a strong effect o...
© 2015 American Chemical Society. There has been long-standing interest in tuning the metal-insulato...
Correlated electron materials can undergo a variety of phase transitions, including superconductivit...
Single-crystal VO2 nanowires were synthesized using atmospheric-pressure and physical vapor depositi...
There has been long-standing interest in tuning the metal–insulator phase transition in vanadium dio...
A Metal-insulator transition (MIT) is the ability of some materials to change between metal and insu...
We investigated external-stress-induced metal-insulator phase transitions in cantilevered single-cry...
We investigated the effect of substrate-induced strain on the metal−insulator transition (MIT) in si...
Vanadium dioxide (VO2) material, known for changing physical properties due to metal-insulator trans...
ABSTRACT Despite the relatively simple stoichiometry and structure of VO2, many questions regarding ...
The metal to insulator transition (MIT) of strongly correlated materials is subject to strong lattic...
The metal-insulator transition (MIT) in strongly correlated oxides has attracted considerable attent...
9The Metal-Insulator transition (MIT) in VO2 is characterized by the complex interplay among lattice...