The potential of nanotechnology depends heavily on the ability to manipulate atoms and nanoparticles with the greatest versatility possible during the manufacturing process of nanostructures. The use of low dimensional structures is a key technological factor in the creation of new functional and sensing devices which benefit from their large surface area to volume ratio. Nevertheless, many properties of nanomaterials depend not only on their size but also on their growth processes. Therefore, it is imperative the quest for a proper understanding and control of the relation between growth processes, structure, morphology, and resulting properties. Among the semiconductor materials, ZnO is considered important and promising. Reasons for this...
ZnO nanorods were synthesized on silicon wafer substrate with a seed zinc layer using the aqueous so...
ZnO nanorods were synthesized on silicon wafer substrate with a seed zinc layer using the aqueous so...
Single-crystal ZnO nanowires long up to several microns were fabricated by one-step electrochemical ...
The potential of nanotechnology depends heavily on the ability to manipulate atoms and nanoparticles...
The present work reports the self-assembled growth of ZnO nanowires on silicon substrate with nanome...
Among metal oxide nanomaterials, zinc oxide (ZnO) nanostructures are one of the most important nanom...
Single-crystal ZnO nanowires long up to several microns were fabricated by one-step electrochemical ...
ZnO is a direct wide bandgap semiconductor crystallizing in the wurtzite structure with a series of ...
Vertically aligned ZnO nanorods arrays were synthesized on glass substrates. ZnO seed layers were pr...
In this review, we briefly describe work devoted in recent years towards the effective control of mo...
The growth mechanism, morphology, structure and optical properties of the ZnO nanostructures grown o...
ZnO nanorods were synthesized on silicon wafer substrate with a seed zinc layer using the aqueous so...
ZnO nanorods were synthesized on silicon wafer substrate with a seed zinc layer using the aqueous so...
ZnO nanorods are grown on Si-based substrate by chemical bath deposition method in aqueous solution ...
ZnO nanorods were synthesized on silicon wafer substrate with a seed zinc layer using the aqueous so...
ZnO nanorods were synthesized on silicon wafer substrate with a seed zinc layer using the aqueous so...
ZnO nanorods were synthesized on silicon wafer substrate with a seed zinc layer using the aqueous so...
Single-crystal ZnO nanowires long up to several microns were fabricated by one-step electrochemical ...
The potential of nanotechnology depends heavily on the ability to manipulate atoms and nanoparticles...
The present work reports the self-assembled growth of ZnO nanowires on silicon substrate with nanome...
Among metal oxide nanomaterials, zinc oxide (ZnO) nanostructures are one of the most important nanom...
Single-crystal ZnO nanowires long up to several microns were fabricated by one-step electrochemical ...
ZnO is a direct wide bandgap semiconductor crystallizing in the wurtzite structure with a series of ...
Vertically aligned ZnO nanorods arrays were synthesized on glass substrates. ZnO seed layers were pr...
In this review, we briefly describe work devoted in recent years towards the effective control of mo...
The growth mechanism, morphology, structure and optical properties of the ZnO nanostructures grown o...
ZnO nanorods were synthesized on silicon wafer substrate with a seed zinc layer using the aqueous so...
ZnO nanorods were synthesized on silicon wafer substrate with a seed zinc layer using the aqueous so...
ZnO nanorods are grown on Si-based substrate by chemical bath deposition method in aqueous solution ...
ZnO nanorods were synthesized on silicon wafer substrate with a seed zinc layer using the aqueous so...
ZnO nanorods were synthesized on silicon wafer substrate with a seed zinc layer using the aqueous so...
ZnO nanorods were synthesized on silicon wafer substrate with a seed zinc layer using the aqueous so...
Single-crystal ZnO nanowires long up to several microns were fabricated by one-step electrochemical ...