We demonstrated the successful growth of catalyst-free InN nanorods on (0001) Al2O3 substrates using metal-organic chemical vapor deposition. Morphological evolution was significantly affected by growth temperature. At 710 degrees C, complete InN nanorods with typical diameters of 150 nm and length of similar to 3.5 mu m were grown with hexagonal facets. theta-2 theta X-ray diffraction measurement shows that (0002) InN nanorods grown on (0001) Al2O3 substrates were vertically aligned along c-axis. In addition, high resolution transmission electron microscopy indicates the spacing of the (0001) lattice planes is 0.28 nm, which is very close to that of bulk InN. The electron diffraction patterns also revealed that the InN nanorods are single ...
International audienceThe control of the morphology of InN nanorods, which remains challenging due t...
International audienceThe control of the morphology of InN nanorods, which remains challenging due t...
We report observation of catalyst-free hydride vapor phase epitaxy growth of InN nanorods. Character...
We demonstrated the successful growth of catalyst-free InN nanorods on (0001) Al2O3 substrates using...
We demonstrated the successful growth of catalyst-free InN nanorods on (0001) Al2O 3 substrates usin...
Vertically aligned hexagonal InN nanorods were grown mask free by conventional metal amp; 8722;organ...
Vertically aligned hexagonal InN nanorods were grown mask-free by conventional metal organic vapor p...
Vertically aligned hexagonal InN nanorods were grown mask-free by conventional metal organic vapor p...
Vertically aligned hexagonal InN nanorods were grown mask free by conventional metal amp; 8722;organ...
Vertically aligned hexagonal InN nanorods were grown mask free by conventional metal amp; 8722;organ...
Vertically aligned hexagonal InN nanorods were grown mask-free by conventional metal–organic vapor p...
One dimensional (1-D) semiconductor nanostructures are attracting lots of attention due to their nov...
Hexangular indium nitride nanoflower pattern is observed from scanning electron microscopy and atomi...
InN nanorods with polyhedral ends were grown by evaporating indium in the flow of ammonia gas on Si ...
vapor phase epitaxy growth of InN nanorods. Character-ization of the nanorods with transmission elec...
International audienceThe control of the morphology of InN nanorods, which remains challenging due t...
International audienceThe control of the morphology of InN nanorods, which remains challenging due t...
We report observation of catalyst-free hydride vapor phase epitaxy growth of InN nanorods. Character...
We demonstrated the successful growth of catalyst-free InN nanorods on (0001) Al2O3 substrates using...
We demonstrated the successful growth of catalyst-free InN nanorods on (0001) Al2O 3 substrates usin...
Vertically aligned hexagonal InN nanorods were grown mask free by conventional metal amp; 8722;organ...
Vertically aligned hexagonal InN nanorods were grown mask-free by conventional metal organic vapor p...
Vertically aligned hexagonal InN nanorods were grown mask-free by conventional metal organic vapor p...
Vertically aligned hexagonal InN nanorods were grown mask free by conventional metal amp; 8722;organ...
Vertically aligned hexagonal InN nanorods were grown mask free by conventional metal amp; 8722;organ...
Vertically aligned hexagonal InN nanorods were grown mask-free by conventional metal–organic vapor p...
One dimensional (1-D) semiconductor nanostructures are attracting lots of attention due to their nov...
Hexangular indium nitride nanoflower pattern is observed from scanning electron microscopy and atomi...
InN nanorods with polyhedral ends were grown by evaporating indium in the flow of ammonia gas on Si ...
vapor phase epitaxy growth of InN nanorods. Character-ization of the nanorods with transmission elec...
International audienceThe control of the morphology of InN nanorods, which remains challenging due t...
International audienceThe control of the morphology of InN nanorods, which remains challenging due t...
We report observation of catalyst-free hydride vapor phase epitaxy growth of InN nanorods. Character...