InN nanorods with polyhedral ends were grown by evaporating indium in the flow of ammonia gas on Si substrates coated with Au catalyst. The samples were characterized by scanning electron microscopy, transmission electron microscopy (TEM), and X-ray diffraction (XRD). XRD shows that the samples contain both cubic and hexagonal phases. From the TEM results, it can be found that the cubic nanorods grow along [010] direction with a lattice constant of 0.497 nm, while the hexagonal nanorods grow along [112-0] direction. The growth mechanism of the obtained nanostructures is discussed. © 2006 Elsevier B.V. All rights reserved.link_to_subscribed_fulltex
Hexagonal wurtzite InN nanowires are grown via a vapor-liquid-solid (VLS) mechanism with an Au catal...
<font face="times new roman,times" size="3"> <font size="2">InN nanowires were grown via a vapo...
Indium nanorods are grown on silicon substrates by using magnrtron-sputtering technique. Film morpho...
One dimensional (1-D) semiconductor nanostructures are attracting lots of attention due to their nov...
We demonstrated the successful growth of catalyst-free InN nanorods on (0001) Al2O 3 substrates usin...
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) Al2O3 substrates using...
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 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...
Vertically aligned hexagonal InN nanorods were grown mask-free by conventional metal–organic vapor p...
Vertically aligned inverted-cone-like InN nanorods were epitaxially grown on Si (111) substrate by m...
vapor phase epitaxy growth of InN nanorods. Character-ization of the nanorods with transmission elec...
Hexagonal wurtzite InN nanowires are grown via a vapor-liquid-solid (VLS) mechanism with an Au catal...
<font face="times new roman,times" size="3"> <font size="2">InN nanowires were grown via a vapo...
Indium nanorods are grown on silicon substrates by using magnrtron-sputtering technique. Film morpho...
One dimensional (1-D) semiconductor nanostructures are attracting lots of attention due to their nov...
We demonstrated the successful growth of catalyst-free InN nanorods on (0001) Al2O 3 substrates usin...
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) Al2O3 substrates using...
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 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...
Vertically aligned hexagonal InN nanorods were grown mask-free by conventional metal–organic vapor p...
Vertically aligned inverted-cone-like InN nanorods were epitaxially grown on Si (111) substrate by m...
vapor phase epitaxy growth of InN nanorods. Character-ization of the nanorods with transmission elec...
Hexagonal wurtzite InN nanowires are grown via a vapor-liquid-solid (VLS) mechanism with an Au catal...
<font face="times new roman,times" size="3"> <font size="2">InN nanowires were grown via a vapo...
Indium nanorods are grown on silicon substrates by using magnrtron-sputtering technique. Film morpho...