Phase transition by band filling control is one of the core concepts in correlated electronic systems. Unlike the substitutional dopants, hydrogen plays a key role in effectively filling significant amount of carriers in the empty narrow d band by reversibly adding it into interstitial sites and supplying carriers. Vanadium dioxide (VO2), typical correlated oxide with 3d 1 electronic configuration, can also reversibly incorporate hydrogen atoms into its interstitial sites and simultaneously occurs phase transition by its 3d band filling. Here, we demonstrate that as many as two hydrogen atoms can be incorporated into each VO2 unit cell, and that hydrogen is reversibly absorbed into, and released from, VO2 without destroying its lattice fram...
We report measurements of the diffusion of atomic hydrogen in single crystalline VO2 micro/nanobeams...
Controlling electronic population through chemical doping is one way to tip the balance between comp...
The salient feature of the familiar structural transition accompanying the thermally-driven metal-in...
Phase transition by band filling control is one of the core concepts in correlated electronic system...
DoctorThe ability to control a variety of functionalities with external stimuli is one of the main i...
As a well-known thermochromic material, Vanadium dioxide (VO2) has drawn widespread interest due to ...
Materials displaying metal-insulator transitions (MITs) as a function of external parameters such as...
Materials displaying metal-insulator transitions (MITs) as a function of external parameters such as...
As a typical correlated oxide, V O 2 has attracted significant attentions due to its pronounce...
Vanadium dioxide (VO$_{\mathrm{2}})$ undergoes a metal-to-insulator transition (MIT) near 340K. Desp...
Strongly correlated systems represent a major topic of study in condensed matter physics. Vanadium d...
We report a morphotropic phase transformation in vanadium dioxide (VO2) nanobeams annealed in a high...
ABSTRACT: Controlling electronic population through chemical doping is one way to tip the balance be...
Materials displaying metal-insulator transitions (MITs) as a function of external parameters such as...
We report a morphotropic phase transformation in vanadium dioxide (VO<sub>2</sub>) nanobeams anneale...
We report measurements of the diffusion of atomic hydrogen in single crystalline VO2 micro/nanobeams...
Controlling electronic population through chemical doping is one way to tip the balance between comp...
The salient feature of the familiar structural transition accompanying the thermally-driven metal-in...
Phase transition by band filling control is one of the core concepts in correlated electronic system...
DoctorThe ability to control a variety of functionalities with external stimuli is one of the main i...
As a well-known thermochromic material, Vanadium dioxide (VO2) has drawn widespread interest due to ...
Materials displaying metal-insulator transitions (MITs) as a function of external parameters such as...
Materials displaying metal-insulator transitions (MITs) as a function of external parameters such as...
As a typical correlated oxide, V O 2 has attracted significant attentions due to its pronounce...
Vanadium dioxide (VO$_{\mathrm{2}})$ undergoes a metal-to-insulator transition (MIT) near 340K. Desp...
Strongly correlated systems represent a major topic of study in condensed matter physics. Vanadium d...
We report a morphotropic phase transformation in vanadium dioxide (VO2) nanobeams annealed in a high...
ABSTRACT: Controlling electronic population through chemical doping is one way to tip the balance be...
Materials displaying metal-insulator transitions (MITs) as a function of external parameters such as...
We report a morphotropic phase transformation in vanadium dioxide (VO<sub>2</sub>) nanobeams anneale...
We report measurements of the diffusion of atomic hydrogen in single crystalline VO2 micro/nanobeams...
Controlling electronic population through chemical doping is one way to tip the balance between comp...
The salient feature of the familiar structural transition accompanying the thermally-driven metal-in...