The use of gate bias to control electronic phases in VO2, an archetypical correlated oxide, offers a powerful method to probe their underlying physics, as well as for the potential to develop novel electronic devices. Up to date, purely electrostatic gating in 3-terminal devices with correlated channel shows the limited electrostatic gating efficiency due to insufficiently induced carrier density and short electrostatic screening length. Here massive and reversible conductance modulation is shown in a VO2 channel by applying gate bias V-G at low voltage by a solid-state proton (H+) conductor. By using porous silica to modulate H+ concentration in VO2, gate-induced reversible insulator-to-metal (I-to-M) phase transition at low voltage, and u...
The development of new phases of matter at oxide interfaces and surfaces by extrinsic electric field...
The development of new phases of matter at oxide interfaces and surfaces by extrinsic electric field...
Metal-insulator transitions (MIT),an intriguing correlated phenomenon induced by the subtle competi...
Strongly correlated systems represent a major topic of study in condensed matter physics. Vanadium d...
Electrolyte gating with ionic liquids is a powerful tool for inducing novel conducting phases in cor...
Two-dimensional electron systems offer enormous opportunities for science discoveries and technologi...
Abstract VO2 is a highly correlated electron system which has a metal-to-insulator transition (MIT) ...
Electrolyte gating of complex oxides enables investigation of electronic phase boundaries and collec...
Phase transition by band filling control is one of the core concepts in correlated electronic system...
Metal-insulator transition (MIT), an intriguing correlated phenomenon induced by the subtle competit...
The development of new phases of matter at oxide interfaces and surfaces by extrinsic electric field...
The development of new phases of matter at oxide interfaces and surfaces by extrinsic electric field...
As a typical correlated oxide, V O 2 has attracted significant attentions due to its pronounce...
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...
The development of new phases of matter at oxide interfaces and surfaces by extrinsic electric field...
The development of new phases of matter at oxide interfaces and surfaces by extrinsic electric field...
Metal-insulator transitions (MIT),an intriguing correlated phenomenon induced by the subtle competi...
Strongly correlated systems represent a major topic of study in condensed matter physics. Vanadium d...
Electrolyte gating with ionic liquids is a powerful tool for inducing novel conducting phases in cor...
Two-dimensional electron systems offer enormous opportunities for science discoveries and technologi...
Abstract VO2 is a highly correlated electron system which has a metal-to-insulator transition (MIT) ...
Electrolyte gating of complex oxides enables investigation of electronic phase boundaries and collec...
Phase transition by band filling control is one of the core concepts in correlated electronic system...
Metal-insulator transition (MIT), an intriguing correlated phenomenon induced by the subtle competit...
The development of new phases of matter at oxide interfaces and surfaces by extrinsic electric field...
The development of new phases of matter at oxide interfaces and surfaces by extrinsic electric field...
As a typical correlated oxide, V O 2 has attracted significant attentions due to its pronounce...
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...
The development of new phases of matter at oxide interfaces and surfaces by extrinsic electric field...
The development of new phases of matter at oxide interfaces and surfaces by extrinsic electric field...
Metal-insulator transitions (MIT),an intriguing correlated phenomenon induced by the subtle competi...