Electrodeposition of ZnO nanorods for device application

We report the electrochemical growth of zinc oxide nanorods in a zinc nitrate/hexamethylenetetramine solution at 70 °C. High-density vertical nanorods were grown on Au films on silicon substrates with a texture coefficient better than 99.9%. By varying the reactant concentration the diameter can be...

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Veröffentlicht in:Applied physics. A, Materials science & processing Materials science & processing, 2008-06, Vol.91 (4), p.595-599
Hauptverfasser: Postels, B., Bakin, A., Wehmann, H.-H., Suleiman, M., Weimann, T., Hinze, P., Waag, A.
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Sprache:eng
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Zusammenfassung:We report the electrochemical growth of zinc oxide nanorods in a zinc nitrate/hexamethylenetetramine solution at 70 °C. High-density vertical nanorods were grown on Au films on silicon substrates with a texture coefficient better than 99.9%. By varying the reactant concentration the diameter can be varied between 100 and 250 nm, with corresponding lengths of 1 to 4 μm. Furthermore, this approach was used for the selective growth on Ti/Au strip conductors ordered in an interdigitated structure on an insulating substrate. We achieved the growth of ZnO nanorods between neighbouring strip conductors bridging the gap between them. In this configuration the nanorods are already contacted and electrical measurements can be directly performed. First I–V measurements show a good conductivity of the as-grown nanorods and the resistance could be estimated to be 0.1 Ω cm. Under UV illumination the ZnO nanorods demonstrate a photoconductivity, but only after annealing the sample at 300 °C in N 2 .
ISSN:0947-8396
1432-0630
DOI:10.1007/s00339-008-4487-1