International audienceThe role of epitaxial strain, thermal strain, and bulk (strain-free) lattice parameter in the metal-insulator transition (MIT) and the structural phase transition (SPT) of VO2 is investigated for the case epitaxial films grown on (001)-oriented TiO2 substrates. Temperature-resolved X-ray reciprocal space mapping has been used to determine the absolute state of strain as well as the bulk lattice parameters of VO2 at 100 • C. For the thinnest film (15 nm), the state of strain is dominated by the film/substrate lattice mismatch yielding an in-plane tensile strain which, in turn, shifts both the MIT and the SPT towards lower temperatures. Conversely, for the thickest film (100 nm), the epitaxial strain is relaxed, so that ...
Controlling the semiconductor-to-metal transition temperature in epitaxial VO<sub>2</sub> thin films...
Tuning the metal insulator transition (MIT) behavior of VO<sub>2</sub> film through the interfacial ...
Ruthenium dioxide (RuO2) is an ideal buffer layer for vanadium dioxide (VO2) heterostructures due to...
International audienceThe role of epitaxial strain, thermal strain, and bulk (strain-free) lattice p...
International audienceThe role of epitaxial strain, thermal strain, and bulk (strain-free) lattice p...
International audienceThe role of epitaxial strain, thermal strain, and bulk (strain-free) lattice p...
International audienceThe metal-insulator switching characteristics of VO2 play a crucial role in th...
International audienceThe metal-insulator switching characteristics of VO2 play a crucial role in th...
International audienceThe metal-insulator switching characteristics of VO2 play a crucial role in th...
International audienceThe metal-insulator switching characteristics of VO2 play a crucial role in th...
International audienceOne of the emerging fields in nano-electronics is the adaptive electronics bas...
International audienceOne of the emerging fields in nano-electronics is the adaptive electronics bas...
International audienceOne of the emerging fields in nano-electronics is the adaptive electronics bas...
A Metal-insulator transition (MIT) is the ability of some materials to change between metal and insu...
The proximity of a thermodynamic triple point and the formation of transient metastable phases may r...
Controlling the semiconductor-to-metal transition temperature in epitaxial VO<sub>2</sub> thin films...
Tuning the metal insulator transition (MIT) behavior of VO<sub>2</sub> film through the interfacial ...
Ruthenium dioxide (RuO2) is an ideal buffer layer for vanadium dioxide (VO2) heterostructures due to...
International audienceThe role of epitaxial strain, thermal strain, and bulk (strain-free) lattice p...
International audienceThe role of epitaxial strain, thermal strain, and bulk (strain-free) lattice p...
International audienceThe role of epitaxial strain, thermal strain, and bulk (strain-free) lattice p...
International audienceThe metal-insulator switching characteristics of VO2 play a crucial role in th...
International audienceThe metal-insulator switching characteristics of VO2 play a crucial role in th...
International audienceThe metal-insulator switching characteristics of VO2 play a crucial role in th...
International audienceThe metal-insulator switching characteristics of VO2 play a crucial role in th...
International audienceOne of the emerging fields in nano-electronics is the adaptive electronics bas...
International audienceOne of the emerging fields in nano-electronics is the adaptive electronics bas...
International audienceOne of the emerging fields in nano-electronics is the adaptive electronics bas...
A Metal-insulator transition (MIT) is the ability of some materials to change between metal and insu...
The proximity of a thermodynamic triple point and the formation of transient metastable phases may r...
Controlling the semiconductor-to-metal transition temperature in epitaxial VO<sub>2</sub> thin films...
Tuning the metal insulator transition (MIT) behavior of VO<sub>2</sub> film through the interfacial ...
Ruthenium dioxide (RuO2) is an ideal buffer layer for vanadium dioxide (VO2) heterostructures due to...