One-Dimensional ZnO Nanostructure Arrays:  Synthesis and Characterization

One-dimensional ZnO nanostructure arrays such as nanowires, nanonails, and nanotrees, have been synthesized by oxygen assisted thermal evaporation of metallic zinc on a quartz substrate over a large area. Morphological evolution of ZnO nanostructures at different time scales and different positions...

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Published inThe journal of physical chemistry. B Vol. 110; no. 10; pp. 4605 - 4611
Main Authors Kar, Soumitra, Pal, Bhola Nath, Chaudhuri, Subhadra, Chakravorty, Dipankar
Format Journal Article
LanguageEnglish
Published United States American Chemical Society 16.03.2006
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Summary:One-dimensional ZnO nanostructure arrays such as nanowires, nanonails, and nanotrees, have been synthesized by oxygen assisted thermal evaporation of metallic zinc on a quartz substrate over a large area. Morphological evolution of ZnO nanostructures at different time scales and different positions of the substrates have been studied by electron microscopy. A self-catalyzed vapor−liquid−solid (VLS) process is believed to be responsible for the nucleation and subsequently a vapor−solid process is operative for further longitudinal growth. The photoluminescence spectrum showed a weak UV and a broad green emission peak at 3.25 and 2.49 eV, respectively. The latter was attributed to the presence of zinc interstitial defects. Electrical resistivity as a function of temperature showed activated mechanisms to be present. The electrical response of the ZnO nanonail arrays to different gases (CO, NO2, and H2S) indicated that there could be possible application as gas sensors for this material.
Bibliography:ark:/67375/TPS-PX4N3B3C-G
istex:6ED9F161326186513A215B3D7D2FF21B3971835E
ObjectType-Article-1
SourceType-Scholarly Journals-1
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ISSN:1520-6106
1520-5207
DOI:10.1021/jp056673r