ZnO nanowire (NW) growth mechanism was investigated in a nonvapor and noncatalytic approach for the controlled NW synthesis in a second time scale. The experimental results showed what ZnO NW growth was determined by migration of zincinterstitials and vacancies in a ZnO layer, which should be also considered in other synthesis techniques and mechanisms. The mechanism of the ZnO NW growth was explained as due to the advantageous diffusion through grain boundaries in ZnO layer and crystal defects in NWs. Additionally, on the basis of photoluminescence measurements, a feasible application of as-produced wires for optoelectronic devices was demonstrated.Peer reviewe
Zinc oxide nano-wires (ZnO NWs) are synthesized reproducibly with high yield via a low temperature h...
Zinc oxide is regarded as an attractive semiconductor alternative to the most commonly used silicon ...
The topic of this dissertation is embedded into the new-born field of inorganic nanowires. The resea...
ZnO nanowire (NW) growth mechanism was investigated in a nonvapor and noncatalytic approach for the ...
ZnO nanowire (NW) growth mechanism was investigated in a nonvapor and noncatalytic approach for the ...
ZnO nanowire (NW) growth mechanism was investigated in a nonvapor and noncatalytic approach for the ...
Semiconducting nanowires (NWs) offer exciting prospects for a wide range of technological applicatio...
The present paper reviews the growth mechanism, processes and optical properties of nanowires with s...
ZnO nanowires were grown by an ultrasonic spray pyrolysis technique. The aspect ratio and size of th...
©2008 Materials Research Society. The original publication is available at: http://www.mrs.org/A nov...
International audienceControlling the growth of zinc oxide nanowires is necessary to optimize the pe...
The electronic version of this article is the complete one and can be found online at: http://link.s...
In this review, we briefly describe work devoted in recent years towards the effective control of mo...
<p>Over the past decade, the study of zinc oxide (ZnO) II-VI semiconducting nanostructures has been ...
AbstractA solution growth approach for zinc oxide (ZnO) nanowires is highly appealing because of the...
Zinc oxide nano-wires (ZnO NWs) are synthesized reproducibly with high yield via a low temperature h...
Zinc oxide is regarded as an attractive semiconductor alternative to the most commonly used silicon ...
The topic of this dissertation is embedded into the new-born field of inorganic nanowires. The resea...
ZnO nanowire (NW) growth mechanism was investigated in a nonvapor and noncatalytic approach for the ...
ZnO nanowire (NW) growth mechanism was investigated in a nonvapor and noncatalytic approach for the ...
ZnO nanowire (NW) growth mechanism was investigated in a nonvapor and noncatalytic approach for the ...
Semiconducting nanowires (NWs) offer exciting prospects for a wide range of technological applicatio...
The present paper reviews the growth mechanism, processes and optical properties of nanowires with s...
ZnO nanowires were grown by an ultrasonic spray pyrolysis technique. The aspect ratio and size of th...
©2008 Materials Research Society. The original publication is available at: http://www.mrs.org/A nov...
International audienceControlling the growth of zinc oxide nanowires is necessary to optimize the pe...
The electronic version of this article is the complete one and can be found online at: http://link.s...
In this review, we briefly describe work devoted in recent years towards the effective control of mo...
<p>Over the past decade, the study of zinc oxide (ZnO) II-VI semiconducting nanostructures has been ...
AbstractA solution growth approach for zinc oxide (ZnO) nanowires is highly appealing because of the...
Zinc oxide nano-wires (ZnO NWs) are synthesized reproducibly with high yield via a low temperature h...
Zinc oxide is regarded as an attractive semiconductor alternative to the most commonly used silicon ...
The topic of this dissertation is embedded into the new-born field of inorganic nanowires. The resea...