International audienceControlling the growth of zinc oxide nanowires is necessary to optimize the performances of nanowire-based devices such as photovoltaic solar cells, nano-generators, or light-emitting diodes. In this view, we investigate the nucleation and growth mechanisms of ZnO nanowires grown by metalorganic vapor phase epitaxy either on O-polar ZnO or on sapphire substrates. Whatever the substrate, ZnO nanowires are Zn-polar, as demonstrated by convergent beam electron diffraction. For growth on O-polar ZnO substrate, the nanowires are found to sit on O-polar pyramids. As growth proceeds, the inversion domain boundary moves up in order to remain at the top of the O-polar pyramids. For growth on sapphire substrates, the nanowires m...
ZnO nanowire (NW) growth mechanism was investigated in a nonvapor and noncatalytic approach for the ...
We report the growth of single-crystalline ZnO nanowires on n- and p-type Si wafers by electrodeposi...
A solution growth approach for zinc oxide (ZnO) nanowires is highly appealing because of the low gro...
Abstract. Controlling the growth of zinc oxide nanowires is necessary to optimize the performances o...
Abstract. Controlling the growth of zinc oxide nanowires is necessary to optimize the performances o...
International audienceZnO is a promising material for the fabrication of light emitting devices. One...
International audienceZnO nanowires grown in liquid phase are considered as promising building block...
AbstractA solution growth approach for zinc oxide (ZnO) nanowires is highly appealing because of the...
Les nanofils de ZnO à puits quantiques et le dopage p par implantation ionique d'azote sont étudiés ...
ZnO nanostructures have received great attention during the past decade due to numerous potential ap...
We report the possibility to control the tilting of nanoneedles and nanowires by using structured sa...
International audienceThe selection of the polarity of ZnO nanowires grown by chemical bath depositi...
Quantum well ZnO nanowires and p-type doping by nitrogen ion implantation are studied to make ultrav...
International audienceThe selection of the polarity of ZnO nanowires grown by chemical bath depositi...
Quantum well ZnO nanowires and p-type doping by nitrogen ion implantation are studied to make ultrav...
ZnO nanowire (NW) growth mechanism was investigated in a nonvapor and noncatalytic approach for the ...
We report the growth of single-crystalline ZnO nanowires on n- and p-type Si wafers by electrodeposi...
A solution growth approach for zinc oxide (ZnO) nanowires is highly appealing because of the low gro...
Abstract. Controlling the growth of zinc oxide nanowires is necessary to optimize the performances o...
Abstract. Controlling the growth of zinc oxide nanowires is necessary to optimize the performances o...
International audienceZnO is a promising material for the fabrication of light emitting devices. One...
International audienceZnO nanowires grown in liquid phase are considered as promising building block...
AbstractA solution growth approach for zinc oxide (ZnO) nanowires is highly appealing because of the...
Les nanofils de ZnO à puits quantiques et le dopage p par implantation ionique d'azote sont étudiés ...
ZnO nanostructures have received great attention during the past decade due to numerous potential ap...
We report the possibility to control the tilting of nanoneedles and nanowires by using structured sa...
International audienceThe selection of the polarity of ZnO nanowires grown by chemical bath depositi...
Quantum well ZnO nanowires and p-type doping by nitrogen ion implantation are studied to make ultrav...
International audienceThe selection of the polarity of ZnO nanowires grown by chemical bath depositi...
Quantum well ZnO nanowires and p-type doping by nitrogen ion implantation are studied to make ultrav...
ZnO nanowire (NW) growth mechanism was investigated in a nonvapor and noncatalytic approach for the ...
We report the growth of single-crystalline ZnO nanowires on n- and p-type Si wafers by electrodeposi...
A solution growth approach for zinc oxide (ZnO) nanowires is highly appealing because of the low gro...