Linear arrays of ZnO nanoparticles have been successfully prepared by a simple sol–gel condensation reaction involving chemical modifiers, followed by drying (80 uC) and calcination (500 uC). The calcined material (nanoarray ZnO) is composed of approximately spherical nanoparticles of average diameter 21 ¡ 3 nm, selfassembled to form arrays extending in length to 2–4 mm. The morphology of the ZnO is found to depend sensitively on the amounts of chemical modifiers present. In their absence the ZnO produced (nano-ZnO) is an unstructured agglomerate of nanoparticles. The mechanism for formation of these linear arrays has been investigated by examining the intermediates formed at 80 uC and 250 uC using XRD and TEM and by following the decomposi...
ZnO based varistors are widely used for overvoltage protection in many electrical and electronic cir...
We report the synthesis and characterization of nanowire-nanoribbon junction arrays of ZnO, which we...
Formation of unique ZnO nanoarrays utilizing photodynamic polymer, surface-relief grating structures...
Linear arrays of ZnO nanoparticles have been successfully prepared by a simple sol–gel condensation ...
ZnO nanoparticles were prepared by a solid state pyrolysis reaction of zinc acetate dihydrate and ox...
Nanoparticles of ZnO were prepared by the reaction of ethanolic solutions of zinc acetate and oxalic...
Nanoparticles of ZnO were prepared by the reaction of ethanolic solutions of zinc acetate and oxalic...
Nanoparticles of ZnO were prepared by the reaction of ethanolic solutions of zinc acetate and oxalic...
THESIS 6659The main focus of this work was to develop novel industrially viable procedures, based on...
An industrially viable solution-based processing route using minimal amounts of solvent has been use...
Nanometre precursor powders of ZnO and various additives are synthesised by a new technology, namely...
An industrially viable solution-based processing route using minimal amounts of solvent has been use...
ZnO based varistors are widely used for overvoltage protection in many electrical and electronic cir...
The rich nanostructural diversity of commecial zinc oxide, fabricated via French process, is investi...
Commercial ZnO varistor ceramics are multi-component, with minor amounts of added oxides that play i...
ZnO based varistors are widely used for overvoltage protection in many electrical and electronic cir...
We report the synthesis and characterization of nanowire-nanoribbon junction arrays of ZnO, which we...
Formation of unique ZnO nanoarrays utilizing photodynamic polymer, surface-relief grating structures...
Linear arrays of ZnO nanoparticles have been successfully prepared by a simple sol–gel condensation ...
ZnO nanoparticles were prepared by a solid state pyrolysis reaction of zinc acetate dihydrate and ox...
Nanoparticles of ZnO were prepared by the reaction of ethanolic solutions of zinc acetate and oxalic...
Nanoparticles of ZnO were prepared by the reaction of ethanolic solutions of zinc acetate and oxalic...
Nanoparticles of ZnO were prepared by the reaction of ethanolic solutions of zinc acetate and oxalic...
THESIS 6659The main focus of this work was to develop novel industrially viable procedures, based on...
An industrially viable solution-based processing route using minimal amounts of solvent has been use...
Nanometre precursor powders of ZnO and various additives are synthesised by a new technology, namely...
An industrially viable solution-based processing route using minimal amounts of solvent has been use...
ZnO based varistors are widely used for overvoltage protection in many electrical and electronic cir...
The rich nanostructural diversity of commecial zinc oxide, fabricated via French process, is investi...
Commercial ZnO varistor ceramics are multi-component, with minor amounts of added oxides that play i...
ZnO based varistors are widely used for overvoltage protection in many electrical and electronic cir...
We report the synthesis and characterization of nanowire-nanoribbon junction arrays of ZnO, which we...
Formation of unique ZnO nanoarrays utilizing photodynamic polymer, surface-relief grating structures...