[[abstract]]A Bi-doped ZnO layer was prepared by means of electrodeposition. The lattice structure of the deposits examined by grazing-incidence X-ray diffraction showed a ZnO wurtzite structure without impurity phases [metallic Zn, Bi, or Zn (OH)(2)]. It was found that the surface morphology, Bi content, and electrical property of the deposits were strongly dependent on deposition conditions, such as bath composition, applied potential, and even the counter electrode used (Pt-coated Ti gauze or Zn sheet). The Bi content in the deposits is 0.09 - 1.58 atom % Bi as determined by inductively coupled plasma atomic emission spectroscopy. The sheet resistance of the deposit with Bi content 1.58 atom % exhibited a 4 order of magnitude improvement...
The physical and electrochemical properties of zinc oxide (ZnO) film electrode that were prepared el...
AbstractZnO with cube-like nanostructures have been fabricated on tin-doped indium oxide (ITO) coate...
International audienceIn situ/in operando X-ray diffraction coupled with electrochemical cycling of ...
This study addresses the producing of bi structure zinc oxide (ZnO) via chemical electrodeposition o...
Zinc Oxide (ZnO) nanostructure thin films doped with bismuth atoms were initially achieved by spin c...
International audiencePure and Bi doped ZnO nanopowders have been prepared by a physical vapor depos...
Transparent conducting ZnO doped Bi thin films were prepared on glass substrates by ultrasonic spray...
The effect of varying the boron and aluminium content of the starting electrolyte for extrinsically ...
In this study, the effect of boron (B) incorporation into zinc oxide (ZnO) has been investigated. Th...
Electrochemical deposition of ZnO from aqueous nitrate solutions on nickel and platinum electrodes w...
An atomic and electronic structure of the bulk and thin-film morphologies of ZnO were modified using...
Electrodeposition from ZnCl2 aqueous solution was performed to grow ZnO thin films on the surface of...
The solid electrolyte is one of the most important components for a solid oxide fuel cell (SOFC). Th...
Bi doped ZnO nanowires and rods have been grown by a catalyst free evaporation-deposition method wit...
An atomic and electronic structure of the bulk and thin-film morphologies of ZnO were modified using...
The physical and electrochemical properties of zinc oxide (ZnO) film electrode that were prepared el...
AbstractZnO with cube-like nanostructures have been fabricated on tin-doped indium oxide (ITO) coate...
International audienceIn situ/in operando X-ray diffraction coupled with electrochemical cycling of ...
This study addresses the producing of bi structure zinc oxide (ZnO) via chemical electrodeposition o...
Zinc Oxide (ZnO) nanostructure thin films doped with bismuth atoms were initially achieved by spin c...
International audiencePure and Bi doped ZnO nanopowders have been prepared by a physical vapor depos...
Transparent conducting ZnO doped Bi thin films were prepared on glass substrates by ultrasonic spray...
The effect of varying the boron and aluminium content of the starting electrolyte for extrinsically ...
In this study, the effect of boron (B) incorporation into zinc oxide (ZnO) has been investigated. Th...
Electrochemical deposition of ZnO from aqueous nitrate solutions on nickel and platinum electrodes w...
An atomic and electronic structure of the bulk and thin-film morphologies of ZnO were modified using...
Electrodeposition from ZnCl2 aqueous solution was performed to grow ZnO thin films on the surface of...
The solid electrolyte is one of the most important components for a solid oxide fuel cell (SOFC). Th...
Bi doped ZnO nanowires and rods have been grown by a catalyst free evaporation-deposition method wit...
An atomic and electronic structure of the bulk and thin-film morphologies of ZnO were modified using...
The physical and electrochemical properties of zinc oxide (ZnO) film electrode that were prepared el...
AbstractZnO with cube-like nanostructures have been fabricated on tin-doped indium oxide (ITO) coate...
International audienceIn situ/in operando X-ray diffraction coupled with electrochemical cycling of ...