Topotactic phase transformation enables structural transition without losing the crystalline symmetry of the parental phase and provides an effective platform for elucidating the redox reaction and oxygen diffusion within transition metal oxides. In addition, it enables tuning of the emergent physical properties of complex oxides, through strong interaction between the lattice and electronic degrees of freedom. In this communication, the electronic structure evolution of SrFeOx epitaxial thin films is identified in real-time, during the progress of reversible topotactic phase transformation. Using real-time optical spectroscopy, the phase transition between the two structurally distinct phases (i.e., brownmillerite and perovskite) is quanti...
Topotactic phase transition between metallic, perovskite SrFeO3 and insulating, Brownmillerite SrFeO...
SrFeOx (SFOx) compounds exhibit ionic conduction and oxygen-related phase transformation, having pot...
International audienceUnderstanding of the metal-insulator transition (MIT) in correlated transition...
Using real-time spectroscopic ellipsometry, we directly observed a reversible lattice and electronic...
Topotactic transitions, i.e. reversible crystallographic varies as a result of the controllable stoi...
Redox‐based memristive devices are one of the most attractive candidates for future nonvolatile memo...
The vacancy distribution of oxygen and its dynamics directly affect the functional response of compl...
Transition metal oxides are a big research topic, because they offer a wide range of possible applic...
Reversible structural transformations between perovskite (PV) ABO3- d and brownmillerite (BM) ABO2.5...
By utilizing redox reactions, the physical properties of several transition metal oxides can be dras...
We have studied the effects of strain and substrate constraint on structural phase transitions of pe...
Reversible topotactic transitions between oxygen-vacancy-ordered structures in transition-metal oxid...
Strontium cobaltite (SrCoO3−) exists in two topotactic phases, depending on the oxygen content. SrCo...
Transition-metal oxides (TMOs) with brownmillerite (BM) structures possess one-dimensional oxygen va...
SrFeOx (SFOx) compounds exhibit ionic conduction and oxygen-related phase transformation, having pot...
Topotactic phase transition between metallic, perovskite SrFeO3 and insulating, Brownmillerite SrFeO...
SrFeOx (SFOx) compounds exhibit ionic conduction and oxygen-related phase transformation, having pot...
International audienceUnderstanding of the metal-insulator transition (MIT) in correlated transition...
Using real-time spectroscopic ellipsometry, we directly observed a reversible lattice and electronic...
Topotactic transitions, i.e. reversible crystallographic varies as a result of the controllable stoi...
Redox‐based memristive devices are one of the most attractive candidates for future nonvolatile memo...
The vacancy distribution of oxygen and its dynamics directly affect the functional response of compl...
Transition metal oxides are a big research topic, because they offer a wide range of possible applic...
Reversible structural transformations between perovskite (PV) ABO3- d and brownmillerite (BM) ABO2.5...
By utilizing redox reactions, the physical properties of several transition metal oxides can be dras...
We have studied the effects of strain and substrate constraint on structural phase transitions of pe...
Reversible topotactic transitions between oxygen-vacancy-ordered structures in transition-metal oxid...
Strontium cobaltite (SrCoO3−) exists in two topotactic phases, depending on the oxygen content. SrCo...
Transition-metal oxides (TMOs) with brownmillerite (BM) structures possess one-dimensional oxygen va...
SrFeOx (SFOx) compounds exhibit ionic conduction and oxygen-related phase transformation, having pot...
Topotactic phase transition between metallic, perovskite SrFeO3 and insulating, Brownmillerite SrFeO...
SrFeOx (SFOx) compounds exhibit ionic conduction and oxygen-related phase transformation, having pot...
International audienceUnderstanding of the metal-insulator transition (MIT) in correlated transition...