A novel methodology based on the dissolution-growth mechanism was developed to prepare ZnO nanowires films. The film morphology and structure were investigated by using field emission scanning electron microscopy, high-resolution transmission electron microscopy and X-ray diffraction analysis methods. The results show that the ZnO nanowires are single crystalline c-oriented wurtzite. The ZnO rod crystals were eroded to provide the growth primitive of ZnO nanowires, which formed on top of the rod crystals when the erosion reaction got the equilibrium. The length of the resultant nanowires is rather large because the successive erosion of the rod crystals maintains the low concentration of Zn2O(OH)2n−2 in the aqueous solution
Abstract—The ZnO nanorod films were synthesized using zinc acetate-sodium hydroxide aqueous solution...
International audienceZnO nanowires grown in liquid phase are considered as promising building block...
Abstract ZnO nanowire nucleation mechanism and initial stages of nanowire growth using the carbother...
ZnO nanowires (or nanorods) have been widely studied due to their unique material properties and rem...
By means of scanning electron microscopope and X-ray diffraction, microstructural evolution of well-...
The present article reports the growth mechanism of zinc oxide (ZnO) nanowires grown on silicon subs...
In situ epitaxial growth of high-oriented ZnO nanowires on annealed zinc film was realized in an env...
A novel morphology of zinc oxide (ZnO) consisting of resistor-shaped nanowires connected “in-series”...
AbstractA solution growth approach for zinc oxide (ZnO) nanowires is highly appealing because of the...
In situ uniform growth of ZnO nanowires was realized and monitored at real time by heating zinc film...
ZnO nanowires were obtained through evaporation of zinc powders under a low temperature of 400 degre...
This study concentrated on the effect of the ZnO seed layer on the growth of ZnO nanowires by the ch...
A solution growth approach for zinc oxide (ZnO) nanowires is highly appealing because of the low gro...
In this thesis the most important properties of nanowires are briefly characterized and possible met...
ZnO nanowire (NW) growth mechanism was investigated in a nonvapor and noncatalytic approach for the ...
Abstract—The ZnO nanorod films were synthesized using zinc acetate-sodium hydroxide aqueous solution...
International audienceZnO nanowires grown in liquid phase are considered as promising building block...
Abstract ZnO nanowire nucleation mechanism and initial stages of nanowire growth using the carbother...
ZnO nanowires (or nanorods) have been widely studied due to their unique material properties and rem...
By means of scanning electron microscopope and X-ray diffraction, microstructural evolution of well-...
The present article reports the growth mechanism of zinc oxide (ZnO) nanowires grown on silicon subs...
In situ epitaxial growth of high-oriented ZnO nanowires on annealed zinc film was realized in an env...
A novel morphology of zinc oxide (ZnO) consisting of resistor-shaped nanowires connected “in-series”...
AbstractA solution growth approach for zinc oxide (ZnO) nanowires is highly appealing because of the...
In situ uniform growth of ZnO nanowires was realized and monitored at real time by heating zinc film...
ZnO nanowires were obtained through evaporation of zinc powders under a low temperature of 400 degre...
This study concentrated on the effect of the ZnO seed layer on the growth of ZnO nanowires by the ch...
A solution growth approach for zinc oxide (ZnO) nanowires is highly appealing because of the low gro...
In this thesis the most important properties of nanowires are briefly characterized and possible met...
ZnO nanowire (NW) growth mechanism was investigated in a nonvapor and noncatalytic approach for the ...
Abstract—The ZnO nanorod films were synthesized using zinc acetate-sodium hydroxide aqueous solution...
International audienceZnO nanowires grown in liquid phase are considered as promising building block...
Abstract ZnO nanowire nucleation mechanism and initial stages of nanowire growth using the carbother...