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  • Archive: 2008
05 Feb 2008
  • 2008
  • V. 7
  • 1
  • (p.42 - 47)

ZnO nanowires grown by chemical deposition an rapid photothermal processing

Authors:

Şişianu, S.; Lupan, Oleg; Chow, Lee; Şişianu, Teodor; Railean, Serghei

Summary:

Chemical deposition aqueous method has been developed to synthesize a new genera- tion of smart and functional nanostructured zinc oxide thin films. This chemical process uses stable and inexpensive metal inorganic salts and solvents in a heterogeneous reaction, without additional template materials to obtain ZnO thin films with different morphologies. The nanosized structures of ZnO are obtained to analyze the physical and structural requirements of their applications in gas sensors. Post-growth photothermal annealing of nanostructured zinc oxide at 650ºC in N2 leads to the suppression of deep-defect-level emission and improvement of near-band edge emission and is ascribed to the decrease in structure defects as compared to the initial nanostructure. The sensing behavior of the nanostructured elements to methanol is investigated.

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BibTeX

@article{ibn_3773,
author = {Şişianu, S.O. and Lupan, O. and Chow, L. and Şişianu, T.S. and Railean, S.C.},
title = {ZnO nanowires grown by chemical deposition an rapid photothermal processing 
},
journal = {Moldavian Journal of the Physical Sciences},
year = {2008},
volume = {7 (1)},
pages = {42-47},
month = {Feb},
abstract = {(EN) Chemical deposition aqueous method has been developed to synthesize a new genera-

tion of smart and functional nanostructured zinc oxide thin films. This chemical process uses 
stable and inexpensive metal inorganic salts and solvents in a heterogeneous reaction, without 
additional template materials to obtain ZnO thin films with different morphologies. The 
nanosized structures of ZnO are obtained to analyze the physical and structural requirements 
of their applications in gas sensors. Post-growth photothermal annealing of nanostructured 
zinc oxide at 650ºC in N2  leads to the  suppression of deep-defect-level emission and improvement of near-band edge emission and is ascribed to the decrease in structure defects as 
compared to the initial nanostructure. The sensing behavior of the nanostructured elements to 
methanol is investigated. },
url = {https://ibn.idsi.md/vizualizare_articol/3773},
}

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nanosized structures of ZnO are obtained to analyze the physical and structural requirements 
of their applications in gas sensors. Post-growth photothermal annealing of nanostructured 
zinc oxide at 650ºC in N2  leads to the  suppression of deep-defect-level emission and improvement of near-band edge emission and is ascribed to the decrease in structure defects as 
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<dc:creator>Chow, L.</dc:creator>
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<dc:date>2008-02-05</dc:date>
<dc:description xml:lang='en'>Chemical deposition aqueous method has been developed to synthesize a new genera-

tion of smart and functional nanostructured zinc oxide thin films. This chemical process uses 
stable and inexpensive metal inorganic salts and solvents in a heterogeneous reaction, without 
additional template materials to obtain ZnO thin films with different morphologies. The 
nanosized structures of ZnO are obtained to analyze the physical and structural requirements 
of their applications in gas sensors. Post-growth photothermal annealing of nanostructured 
zinc oxide at 650ºC in N2  leads to the  suppression of deep-defect-level emission and improvement of near-band edge emission and is ascribed to the decrease in structure defects as 
compared to the initial nanostructure. The sensing behavior of the nanostructured elements to 
methanol is investigated. </dc:description>
<dc:source>Moldavian Journal of the Physical Sciences 7 (1) 42-47</dc:source>
<dc:title>ZnO nanowires grown by chemical deposition an rapid photothermal processing 
</dc:title>
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ŞIŞIANU, S.; LUPAN, Oleg; CHOW, Lee; SHISHIYANU, Teodor; RAILEAN, Sergey. ZnO nanowires grown by chemical deposition an rapid photothermal processing . In: Moldavian Journal of the Physical Sciences. 2008, nr. 1(7), pp. 42-47. ISSN 1810-648X.

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