For the first time, Tin oxide (SnO2) multiple branched nanowires (NWs) have been synthesized by thermal evaporation of tin (Sn) in presence of oxygen without use of metal catalysts at low substrate temperature of 500 degrees C. Synthesized product consists of multiple branched nanowires and were single crystalline in nature. Each of the nanowire capped with catalyst particle at their ends. Energy dispersive X-ray analysis on the nanowires and capped nanoparticle confirms that Sn act as catalyst for SnO2 nanowires growth. A self catalytic vapor-liquid-solid (VLS) growth mechanism was proposed to describe the SnO2 nanowires growth. (C) 2012 Elsevier B.V. All rights reserved
For the first time, high quality tin oxide (SnO2) nanowires have been synthesized at a low substrate...
SnO2 nanomaterial was fabricated using the horizontal vapor phase growth technique without a catalys...
SnO2 nanomaterial was fabricated using the horizontal vapor phase growth technique without a catalys...
For the first time, Tin oxide (SnO2) multiple branched nanowires (NWs) have been synthesized by ther...
We report on the synthesis of tin oxide (SnO2) nanowires by a chemical vapor deposition (CVD) proces...
Tin oxide (SnO2) nanowires have been synthesised using a thermal evaporation approach on quartz (SiO...
Tin oxide (SnO2) nanowires were synthesized via catalyst assisted VLS growth mechanism by the electr...
Tin oxide (SnO2) nanowires were synthesized via catalyst assisted VLS growth mechanism by the electr...
Tin oxide (SnO2) nanowires (NWs) were synthesized via the gold-catalyzed chemical vapor deposition o...
Semiconducting oxides in nanowire-shape have stimulated a great interest for applications in optics ...
Antimony doped tin oxide (Sb:SnO2) nanowires were grown by thermal and e-beam assisted co-evaporatio...
Antimony doped tin oxide (Sb:SnO2) nanowires were grown by thermal and e-beam assisted co-evaporatio...
For the first time, high quality tin oxide (SnO2) nanowires have been synthesized at a low substrate...
The descriptions of SnO2 nanowires growth procedures are getting more and more frequent in the curre...
We present a comparison between Au, TiO2, and self-catalysed growth of SnO2 nanostructures using che...
For the first time, high quality tin oxide (SnO2) nanowires have been synthesized at a low substrate...
SnO2 nanomaterial was fabricated using the horizontal vapor phase growth technique without a catalys...
SnO2 nanomaterial was fabricated using the horizontal vapor phase growth technique without a catalys...
For the first time, Tin oxide (SnO2) multiple branched nanowires (NWs) have been synthesized by ther...
We report on the synthesis of tin oxide (SnO2) nanowires by a chemical vapor deposition (CVD) proces...
Tin oxide (SnO2) nanowires have been synthesised using a thermal evaporation approach on quartz (SiO...
Tin oxide (SnO2) nanowires were synthesized via catalyst assisted VLS growth mechanism by the electr...
Tin oxide (SnO2) nanowires were synthesized via catalyst assisted VLS growth mechanism by the electr...
Tin oxide (SnO2) nanowires (NWs) were synthesized via the gold-catalyzed chemical vapor deposition o...
Semiconducting oxides in nanowire-shape have stimulated a great interest for applications in optics ...
Antimony doped tin oxide (Sb:SnO2) nanowires were grown by thermal and e-beam assisted co-evaporatio...
Antimony doped tin oxide (Sb:SnO2) nanowires were grown by thermal and e-beam assisted co-evaporatio...
For the first time, high quality tin oxide (SnO2) nanowires have been synthesized at a low substrate...
The descriptions of SnO2 nanowires growth procedures are getting more and more frequent in the curre...
We present a comparison between Au, TiO2, and self-catalysed growth of SnO2 nanostructures using che...
For the first time, high quality tin oxide (SnO2) nanowires have been synthesized at a low substrate...
SnO2 nanomaterial was fabricated using the horizontal vapor phase growth technique without a catalys...
SnO2 nanomaterial was fabricated using the horizontal vapor phase growth technique without a catalys...