Oxygen defects are essential building blocks for designing functional oxides with remarkable properties, ranging from electrical and ionic conductivity to magnetism and ferroelectricity. Oxygen defects, despite being spatially localized, can profoundly alter global properties such as the crystal symmetry and electronic structure, thereby enabling emergent phenomena. In this work, we achieved tunable metal–insulator transitions (MIT) in oxide heterostructures by inducing interfacial oxygen vacancy migration. We chose the non-stoichiometric VO2-δ as a model system due to its near room temperature MIT temperature. We found that depositing a TiO2 capping layer on an epitaxial VO2 thin film can effectively reduce the resistance of the insulating...
Vanadium dioxide (VO2) undergoes an insulator to metal transition (MIT) and an accompanied phase tra...
Vanadium dioxide (VO<sub>2</sub>) is a key material for thermochromic smart windows that can respond...
An oxygen vacancy defect in monoclinic VO<sub>2</sub> has been shown to modulate the metal–insulator...
Strongly correlated vanadium dioxide (VO<sub>2</sub>) is one of the most promising materials that ex...
Metal-insulator transitions (MIT),an intriguing correlated phenomenon induced by the subtle competi...
Strongly correlated vanadium dioxide (VO2) is one of the most promising materials that exhibits a te...
Vanadium dioxide (VO2) material shows a distinct metal-insulator transition (MIT) at the critical te...
Metal-insulator transition (MIT), an intriguing correlated phenomenon induced by the subtle competit...
Heterogeneous interfaces exhibit the unique phenomena by the redistribution of charged species to eq...
Vanadium dioxide (VO2) is a strongly correlated material with 3d electrons, which exhibits temperatu...
Epitaxial ultra-thin oxide films can support large percent level strains well beyond their bulk coun...
We have prepared VO2 thin films epitaxially grown on TiO2(001) substrates with thickness systematica...
The VO2 thin films with sharp metal–insulator transition (MIT) were epitaxially grown on (001)...
The metal-insulator transition in correlated materials is usually coupled to a symmetry-lowering str...
We investigate the structural, electronic, and magnetic properties of a particular interface in the ...
Vanadium dioxide (VO2) undergoes an insulator to metal transition (MIT) and an accompanied phase tra...
Vanadium dioxide (VO<sub>2</sub>) is a key material for thermochromic smart windows that can respond...
An oxygen vacancy defect in monoclinic VO<sub>2</sub> has been shown to modulate the metal–insulator...
Strongly correlated vanadium dioxide (VO<sub>2</sub>) is one of the most promising materials that ex...
Metal-insulator transitions (MIT),an intriguing correlated phenomenon induced by the subtle competi...
Strongly correlated vanadium dioxide (VO2) is one of the most promising materials that exhibits a te...
Vanadium dioxide (VO2) material shows a distinct metal-insulator transition (MIT) at the critical te...
Metal-insulator transition (MIT), an intriguing correlated phenomenon induced by the subtle competit...
Heterogeneous interfaces exhibit the unique phenomena by the redistribution of charged species to eq...
Vanadium dioxide (VO2) is a strongly correlated material with 3d electrons, which exhibits temperatu...
Epitaxial ultra-thin oxide films can support large percent level strains well beyond their bulk coun...
We have prepared VO2 thin films epitaxially grown on TiO2(001) substrates with thickness systematica...
The VO2 thin films with sharp metal–insulator transition (MIT) were epitaxially grown on (001)...
The metal-insulator transition in correlated materials is usually coupled to a symmetry-lowering str...
We investigate the structural, electronic, and magnetic properties of a particular interface in the ...
Vanadium dioxide (VO2) undergoes an insulator to metal transition (MIT) and an accompanied phase tra...
Vanadium dioxide (VO<sub>2</sub>) is a key material for thermochromic smart windows that can respond...
An oxygen vacancy defect in monoclinic VO<sub>2</sub> has been shown to modulate the metal–insulator...