Phase-change materials based on GeSbTe show unique switchable optoelectronic properties and are an important contender for next-generation non-volatile memories. Moreover, they recently received considerable scientific interest, because it is found that a vacancy ordering process is responsible for both an electronic metal-insulator transition and a structural cubic-to-trigonal transition. GeTe Sb2Te3 based superlattices, or specifically their interfaces, provide an interesting platform for the study of GeSbTe alloys. In this work such superlattices have been grown with molecular beam epitaxy and they have been characterized extensively with transmission electron microscopy and X-ray diffraction. It is shown that the van der Waals gaps in t...
GeTe-Sb2Te3 superlattices are nanostructured phase-change materials which are under intense investig...
GeTe–Sb2Te3 superlattices are nanostructured phase-change materials which are under intense investig...
GeTe–Sb2Te3 superlattices are nanostructured phase-change materials which are under intense investig...
Phase-change materials based on GeSbTe show unique switchable optoelectronic properties and are an i...
Phase-change materials based on GeSbTe show unique switchable optoelectronic properties and are an i...
Phase-change materials based on GeSbTe show unique switchable optoelectronic properties and are an i...
Phase-change materials based on GeSbTe show unique switchable optoelectronic properties and are an i...
Phase-change materials based on GeSbTe show unique switchable optoelectronic properties and are an i...
Phase-change materials based on GeSbTe show unique switchable optoelectronic properties and are an i...
Phase-change materials based on GeSbTe show unique switchable optoelectronic properties and are an i...
Phase-change materials based on GeSbTe show unique switchable optoelectronic properties and are an i...
GeTe-Sb2Te3 superlattices are nanostructured phase-change materials which are under intense investig...
GeTe-Sb2Te3 superlattices are nanostructured phase-change materials which are under intense investig...
GeTe-Sb2Te3 superlattices are nanostructured phase-change materials which are under intense investig...
GeTe-Sb2Te3 superlattices are nanostructured phase-change materials which are under intense investig...
GeTe-Sb2Te3 superlattices are nanostructured phase-change materials which are under intense investig...
GeTe–Sb2Te3 superlattices are nanostructured phase-change materials which are under intense investig...
GeTe–Sb2Te3 superlattices are nanostructured phase-change materials which are under intense investig...
Phase-change materials based on GeSbTe show unique switchable optoelectronic properties and are an i...
Phase-change materials based on GeSbTe show unique switchable optoelectronic properties and are an i...
Phase-change materials based on GeSbTe show unique switchable optoelectronic properties and are an i...
Phase-change materials based on GeSbTe show unique switchable optoelectronic properties and are an i...
Phase-change materials based on GeSbTe show unique switchable optoelectronic properties and are an i...
Phase-change materials based on GeSbTe show unique switchable optoelectronic properties and are an i...
Phase-change materials based on GeSbTe show unique switchable optoelectronic properties and are an i...
Phase-change materials based on GeSbTe show unique switchable optoelectronic properties and are an i...
GeTe-Sb2Te3 superlattices are nanostructured phase-change materials which are under intense investig...
GeTe-Sb2Te3 superlattices are nanostructured phase-change materials which are under intense investig...
GeTe-Sb2Te3 superlattices are nanostructured phase-change materials which are under intense investig...
GeTe-Sb2Te3 superlattices are nanostructured phase-change materials which are under intense investig...
GeTe-Sb2Te3 superlattices are nanostructured phase-change materials which are under intense investig...
GeTe–Sb2Te3 superlattices are nanostructured phase-change materials which are under intense investig...
GeTe–Sb2Te3 superlattices are nanostructured phase-change materials which are under intense investig...