In this study, a voltage controlled, reproducible, scalable, and cost-effective approach for depositing zinc oxide (ZnO) nanoparticles (NPs), using electrophoretic deposition (EPD) onto p-type silicon (Si) substrates, has been researched and analyzed for its feasibility with respect to electronic device fabrication and fluorescence-based sensors. Our work presents a detailed investigation to evaluate the influence of ZnO morphology, ZnO concentration, and the method of surface treatment applied to the underlying Si substrates, because these pertain to an optimized EPD system. It has been noted that the ZnO NP structures formed directly atop the (3-aminopropyl) triethoxysilane (APTES)-treated Si substrates were more adhesive, thus resulting ...
ZnO nanoparticles were successfully deposited on porous silicon (PSi) substrate using spin-coating m...
The transition metals were used to enhance the optical properties of the semiconductor. Zinc (Zn) wa...
International audienceZinc oxide (ZnO) nanofibers and nanopetals were successfully deposited onto me...
Several reports state that it is crucial to analyze nanoscale semiconductor materials and devices wi...
The present work reports the self-assembled growth of ZnO nanowires on silicon substrate with nanome...
The potential of nanotechnology depends heavily on the ability to manipulate atoms and nanoparticles...
This article presents the study of the electrochemical deposition of zinc oxide from the non-aqueous...
Zinc oxide (ZnO) samples have been prepared on nanostructured porous silicon (NPSi) substrate by vap...
The parameters that control the stability of ZnO-nanoparticles suspensions and their deposition by e...
To date, EPD obtained ZnO one-dimensional nanostructures have been achieved by depositing ZnO nanopa...
We report results of the studies relating to controlled deposition of the amino-functionalized silic...
ZnO nanostructures were grown by simple techniques to develop ZnO-based semiconductor photodetectors...
We present zinc oxide (ZnO) particles obtained inside a porous silicon matrix in the same electrolyt...
Nanomaterials have been found to exhibit interesting properties like semiconducting, piezoelectricit...
Superhydrophobic thin films have been fabricated on aluminum alloy substrates by electrophoretic dep...
ZnO nanoparticles were successfully deposited on porous silicon (PSi) substrate using spin-coating m...
The transition metals were used to enhance the optical properties of the semiconductor. Zinc (Zn) wa...
International audienceZinc oxide (ZnO) nanofibers and nanopetals were successfully deposited onto me...
Several reports state that it is crucial to analyze nanoscale semiconductor materials and devices wi...
The present work reports the self-assembled growth of ZnO nanowires on silicon substrate with nanome...
The potential of nanotechnology depends heavily on the ability to manipulate atoms and nanoparticles...
This article presents the study of the electrochemical deposition of zinc oxide from the non-aqueous...
Zinc oxide (ZnO) samples have been prepared on nanostructured porous silicon (NPSi) substrate by vap...
The parameters that control the stability of ZnO-nanoparticles suspensions and their deposition by e...
To date, EPD obtained ZnO one-dimensional nanostructures have been achieved by depositing ZnO nanopa...
We report results of the studies relating to controlled deposition of the amino-functionalized silic...
ZnO nanostructures were grown by simple techniques to develop ZnO-based semiconductor photodetectors...
We present zinc oxide (ZnO) particles obtained inside a porous silicon matrix in the same electrolyt...
Nanomaterials have been found to exhibit interesting properties like semiconducting, piezoelectricit...
Superhydrophobic thin films have been fabricated on aluminum alloy substrates by electrophoretic dep...
ZnO nanoparticles were successfully deposited on porous silicon (PSi) substrate using spin-coating m...
The transition metals were used to enhance the optical properties of the semiconductor. Zinc (Zn) wa...
International audienceZinc oxide (ZnO) nanofibers and nanopetals were successfully deposited onto me...