The GeTe-based system has long been considered as a promising candidate system for various functional applications; many of which are directly related to the polymorphic phase transformation in their crystalline forms. Consequently, the microstructure underlying their intriguing phase transition has been the subject of numerous studies. Here we provide real-time observation of the microstructural changes associated with the reversible pseudo-cubic (or rhombohedral) to cubic GeTe phase transition using high-voltage transmission electron microscopy (HV-TEM) operating at 1,250 kV and complementary high-temperature X-ray diffraction (XRD). As a result of the phase transition, the pseudo-cubic GeTe domain's configuration significantly changes fr...
As a part of our structural, optical, and electrical studies of amorphous versus crystalline GeTe fi...
As a part of our structural, optical, and electrical studies of amorphous versus crystalline GeTe fi...
International audienceIn this work, we reexamine Ge rejection in Ge-rich GeTe thin films with a slig...
The GeTe-based system has long been considered as a promising candidate system for various functiona...
The GeTe-based system has long been considered as a promising candidate system for various functiona...
The GeTe-based system has long been considered as a promising candidate system for various functiona...
The recent surge of interest in phase-change materials GeTe, Ge2Sb2Te5, and related compounds motiva...
We investigated changes in the crystal structure of GeTe during its phase transition. Using density ...
The chemical states of GeTe thin film are investigated using high-resolution X-ray photoelectron spe...
International audienceThe crystallization mechanisms of prototypical GeTe phase-change material thin...
International audienceThe crystallization mechanisms of prototypical GeTe phase-change material thin...
International audienceThe crystallization mechanisms of prototypical GeTe phase-change material thin...
International audienceThe crystallization mechanisms of prototypical GeTe phase-change material thin...
International audienceThe crystallization mechanisms of prototypical GeTe phase-change material thin...
Among other chalcogenide thermoelectric materials, GeTe and derivative alloys are good candidates fo...
As a part of our structural, optical, and electrical studies of amorphous versus crystalline GeTe fi...
As a part of our structural, optical, and electrical studies of amorphous versus crystalline GeTe fi...
International audienceIn this work, we reexamine Ge rejection in Ge-rich GeTe thin films with a slig...
The GeTe-based system has long been considered as a promising candidate system for various functiona...
The GeTe-based system has long been considered as a promising candidate system for various functiona...
The GeTe-based system has long been considered as a promising candidate system for various functiona...
The recent surge of interest in phase-change materials GeTe, Ge2Sb2Te5, and related compounds motiva...
We investigated changes in the crystal structure of GeTe during its phase transition. Using density ...
The chemical states of GeTe thin film are investigated using high-resolution X-ray photoelectron spe...
International audienceThe crystallization mechanisms of prototypical GeTe phase-change material thin...
International audienceThe crystallization mechanisms of prototypical GeTe phase-change material thin...
International audienceThe crystallization mechanisms of prototypical GeTe phase-change material thin...
International audienceThe crystallization mechanisms of prototypical GeTe phase-change material thin...
International audienceThe crystallization mechanisms of prototypical GeTe phase-change material thin...
Among other chalcogenide thermoelectric materials, GeTe and derivative alloys are good candidates fo...
As a part of our structural, optical, and electrical studies of amorphous versus crystalline GeTe fi...
As a part of our structural, optical, and electrical studies of amorphous versus crystalline GeTe fi...
International audienceIn this work, we reexamine Ge rejection in Ge-rich GeTe thin films with a slig...