[[abstract]]Epitaxial Permalloy thin films were prepared on the sapphire substrates via Mo buffer layer. The structure of epitaxial Permalloy film is strongly related to the thickness of the buffer layer. Different preferred orientations has been observed as the thickness of the Mo buffer layer increased from 0 to 20 nm. With the in-plane Permalloy[0-11] azimuth always locked on the Al2O3 [0001] direction, the Permalloy(111) is the preferred orientation in plane normal direction deposition without Mo layer. The preferred orientation changes to (220) when the Mo layer thickness increases to more than 0.4 nm, and shifts to (211) when the Mo thickness is larger 1 nm. The variation of epitaxial orientation is attributed to the stabilization of ...
Epitaxial thin films made of nanosized yttria-stabilized zirconia islands deposited on (0001) sapphi...
Epitaxial thin films made of nanosized yttria-stabilized zirconia islands deposited on (0001) sapphi...
Monolayer MoS<sub>2</sub> prepared by chemical vapor deposition (CVD) has a highly polycrystalline n...
International audienceA high-throughput investigation of local epitaxy (called combinatorial substra...
International audienceA high-throughput investigation of local epitaxy (called combinatorial substra...
International audienceA high-throughput investigation of local epitaxy (called combinatorial substra...
International audienceA high-throughput investigation of local epitaxy (called combinatorial substra...
International audienceA high-throughput investigation of local epitaxy (called combinatorial substra...
International audienceNano-crystalline Ni and Cu films deposited on the r-plane of sapphire (-Al 2 O...
International audienceNano-crystalline Ni and Cu films deposited on the r-plane of sapphire (-Al 2 O...
International audienceNano-crystalline Ni and Cu films deposited on the r-plane of sapphire (-Al 2 O...
Epitaxial thin films of Al-doped zinc oxide have been grown on sapphire substrates by pulsed laser a...
MgO has been deposited on r-plane cut sapphire single crystalline substrate at temperatures between ...
The growth of high quality AlN epitaxial films relies on precise control of the initial growth stage...
Epitaxial thin films made of nanosized yttria-stabilized zirconia islands deposited on (0001) sapphi...
Epitaxial thin films made of nanosized yttria-stabilized zirconia islands deposited on (0001) sapphi...
Epitaxial thin films made of nanosized yttria-stabilized zirconia islands deposited on (0001) sapphi...
Monolayer MoS<sub>2</sub> prepared by chemical vapor deposition (CVD) has a highly polycrystalline n...
International audienceA high-throughput investigation of local epitaxy (called combinatorial substra...
International audienceA high-throughput investigation of local epitaxy (called combinatorial substra...
International audienceA high-throughput investigation of local epitaxy (called combinatorial substra...
International audienceA high-throughput investigation of local epitaxy (called combinatorial substra...
International audienceA high-throughput investigation of local epitaxy (called combinatorial substra...
International audienceNano-crystalline Ni and Cu films deposited on the r-plane of sapphire (-Al 2 O...
International audienceNano-crystalline Ni and Cu films deposited on the r-plane of sapphire (-Al 2 O...
International audienceNano-crystalline Ni and Cu films deposited on the r-plane of sapphire (-Al 2 O...
Epitaxial thin films of Al-doped zinc oxide have been grown on sapphire substrates by pulsed laser a...
MgO has been deposited on r-plane cut sapphire single crystalline substrate at temperatures between ...
The growth of high quality AlN epitaxial films relies on precise control of the initial growth stage...
Epitaxial thin films made of nanosized yttria-stabilized zirconia islands deposited on (0001) sapphi...
Epitaxial thin films made of nanosized yttria-stabilized zirconia islands deposited on (0001) sapphi...
Epitaxial thin films made of nanosized yttria-stabilized zirconia islands deposited on (0001) sapphi...
Monolayer MoS<sub>2</sub> prepared by chemical vapor deposition (CVD) has a highly polycrystalline n...