Nanosized ZnO structures were grown by atmospheric pressure metalorganic chemical vapor deposition (APMOCVD) in the temperature range 200-500 degrees C at variable precursor pressure. Temperature induced evolution of the ZnO microstructure was observed, resulting in regular transformation of the material from conventional polycrystalline layers to hierarchically arranged sheaves of ZnO nanowires. The structures obtained were uniformly planarly located over the substrate and possessed as low nanowires diameter as 30-45 nm at the tips. The observed growth evolution is explained in terms of ZnO crystal planes free energy difference and growth kinetics. For comparison, the convenient growth at constant precursor pressure on Si and SiC substrate...
International audienceA perfect control of nanostructure growth is a prerequisite for the developmen...
International audienceA perfect control of nanostructure growth is a prerequisite for the developmen...
The present article reports the growth mechanism of zinc oxide (ZnO) nanowires grown on silicon subs...
The structural characteristics of ZnO nanocrystals epitaxially grown on p-type (0001) 4H-SiC substra...
Synthesis of ultrathin ZnO nanowires gains great attention from research community because oftheir l...
In this study, a novel method called “atmospheric pressure solution evaporation (APSE)” wasdeveloped...
ZnO nanostructures have been investigated for quite a long time. However, only recently they trigger...
ZnO nanostructures have been investigated for quite a long time. However, only recently they trigger...
Tailor-made nanostructured ZnO cages have been catalytically grown on Au and Pt films covering silic...
The growth mechanism, morphology, structure and optical properties of the ZnO nanostructures grown o...
International audienceZnO nanostructures were grown on Au-catalyzed Si silicon substrates using vapo...
International audienceZnO nanostructures were grown on Au-catalyzed Si silicon substrates using vapo...
International audienceZnO nanostructures were grown on Au-catalyzed Si silicon substrates using vapo...
Zinc Oxide (ZnO) nanomaterials were grown on glass substrate through the non-catalytic horizontal va...
In the last years, many papers have dealt with the topic of metal oxide nanowire growth and characte...
International audienceA perfect control of nanostructure growth is a prerequisite for the developmen...
International audienceA perfect control of nanostructure growth is a prerequisite for the developmen...
The present article reports the growth mechanism of zinc oxide (ZnO) nanowires grown on silicon subs...
The structural characteristics of ZnO nanocrystals epitaxially grown on p-type (0001) 4H-SiC substra...
Synthesis of ultrathin ZnO nanowires gains great attention from research community because oftheir l...
In this study, a novel method called “atmospheric pressure solution evaporation (APSE)” wasdeveloped...
ZnO nanostructures have been investigated for quite a long time. However, only recently they trigger...
ZnO nanostructures have been investigated for quite a long time. However, only recently they trigger...
Tailor-made nanostructured ZnO cages have been catalytically grown on Au and Pt films covering silic...
The growth mechanism, morphology, structure and optical properties of the ZnO nanostructures grown o...
International audienceZnO nanostructures were grown on Au-catalyzed Si silicon substrates using vapo...
International audienceZnO nanostructures were grown on Au-catalyzed Si silicon substrates using vapo...
International audienceZnO nanostructures were grown on Au-catalyzed Si silicon substrates using vapo...
Zinc Oxide (ZnO) nanomaterials were grown on glass substrate through the non-catalytic horizontal va...
In the last years, many papers have dealt with the topic of metal oxide nanowire growth and characte...
International audienceA perfect control of nanostructure growth is a prerequisite for the developmen...
International audienceA perfect control of nanostructure growth is a prerequisite for the developmen...
The present article reports the growth mechanism of zinc oxide (ZnO) nanowires grown on silicon subs...