5 pagesInternational audienceIon implantation is an interesting method to dope semiconducting materials such as zinc oxide provided that the implantation-induced defects can be subsequently removed. Nitrogen implantation followed by anneals under O2 were carried out on zinc oxide nanowires in the same conditions as in a previous study on bulk ZnO [J. Appl.Phys. 109, 023513 (2011)], allowing a direct comparison of the defect recovery mechanisms. Transmission electron microscopy and cathodoluminescence were carried out to assess the effects of nitrogen implantation and of subsequent anneals on the structural and optical properties of ZnO nanowires. Defect recovery is shown to be more effective in nanowires compared with bulk material due to t...
ZnO nanowire (NW) growth mechanism was investigated in a nonvapor and noncatalytic approach for the ...
Quantum well ZnO nanowires and p-type doping by nitrogen ion implantation are studied to make ultrav...
ZnO is one of the most widely studied semiconductors due to its direct wide band gap and high excito...
5 pagesInternational audienceIon implantation is an interesting method to dope semiconducting materi...
8 pagesInternational audienceAlthough zinc oxide is a promising material for the fabrication of shor...
Les nanofils de ZnO à puits quantiques et le dopage p par implantation ionique d'azote sont étudiés ...
The PhD dissertation focuses on the investigation of single Co-implanted ZnO nanowires using X-ray f...
Le travail présenté dans cette thèse a pour objectif d’étudier le dopage p des nanofils de ZnO par d...
The electronic version of this article is the complete one and can be found online at: http://link.s...
University of Technology Sydney. Faculty of Science.ZnO is a wide bandgap semiconductor with a direc...
One-dimensional ZnO nanowires are a promising material system for a wide range of optoelectronic and...
International audienceZnO nanowires were grown on sapphire substrates using metalorganic chemical va...
International audienceControlling the growth of zinc oxide nanowires is necessary to optimize the pe...
The topic of this dissertation is embedded into the new-born field of inorganic nanowires. The resea...
The work presented in this thesis aims to study the p-doping of ZnO nanowires by two different metho...
ZnO nanowire (NW) growth mechanism was investigated in a nonvapor and noncatalytic approach for the ...
Quantum well ZnO nanowires and p-type doping by nitrogen ion implantation are studied to make ultrav...
ZnO is one of the most widely studied semiconductors due to its direct wide band gap and high excito...
5 pagesInternational audienceIon implantation is an interesting method to dope semiconducting materi...
8 pagesInternational audienceAlthough zinc oxide is a promising material for the fabrication of shor...
Les nanofils de ZnO à puits quantiques et le dopage p par implantation ionique d'azote sont étudiés ...
The PhD dissertation focuses on the investigation of single Co-implanted ZnO nanowires using X-ray f...
Le travail présenté dans cette thèse a pour objectif d’étudier le dopage p des nanofils de ZnO par d...
The electronic version of this article is the complete one and can be found online at: http://link.s...
University of Technology Sydney. Faculty of Science.ZnO is a wide bandgap semiconductor with a direc...
One-dimensional ZnO nanowires are a promising material system for a wide range of optoelectronic and...
International audienceZnO nanowires were grown on sapphire substrates using metalorganic chemical va...
International audienceControlling the growth of zinc oxide nanowires is necessary to optimize the pe...
The topic of this dissertation is embedded into the new-born field of inorganic nanowires. The resea...
The work presented in this thesis aims to study the p-doping of ZnO nanowires by two different metho...
ZnO nanowire (NW) growth mechanism was investigated in a nonvapor and noncatalytic approach for the ...
Quantum well ZnO nanowires and p-type doping by nitrogen ion implantation are studied to make ultrav...
ZnO is one of the most widely studied semiconductors due to its direct wide band gap and high excito...