Growth of compact arrays of optical quality single crystalline ZnO nanorods by low temperature method

Ghosh, Manoranjan ; Bhattacharyya, Ritwik ; Raychaudhuri, A. K. (2008) Growth of compact arrays of optical quality single crystalline ZnO nanorods by low temperature method Bulletin of Materials Science, 31 (3). pp. 283-289. ISSN 0250-4707

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Official URL: http://www.ias.ac.in/matersci/bmsjun2008/283.pdf

Related URL: http://dx.doi.org/10.1007/s12034-008-0046-9

Abstract

We report the synthesis and optical properties of compact and aligned ZnO nanorod arrays (dia, ∼50-200 nm) grown on a glass substrate with varying seed particle density. The suspension of ZnO nanoparticles (size, ∼15 nm) of various concentrations are used as seed layer for the growth of nanorod arrays via selfassembly of ZnO from solution. We studied the effect of various growth parameters (such as seeding density, microstructure of the seed layer) as well as the growth time on the growth and alignment of the nanorods. We find that the growth, areal density and alignment of the nanorods depend on the density of seed particles which can be controlled. It is observed that there is a critical density of the seed particles at which nanorod arrays show maximum preferred orientation along [002] direction. The minimum and maximum radius of the aligned nanorods synthesized by this method lie in the range 50-220 nm which depend on the seeding density and time of growth. These nanorods have a bandgap of 3.3 eV as in the case of bulk crystals and show emission in the UV region of the spectrum (∼400 nm) due to excitonic recombination and defect related emission in the visible region.

Item Type:Article
Source:Copyright of this article belongs to Indian Academy of Sciences.
Keywords:ZnO; Nanorods; Density Controlled Growth; Preferred Orientation
ID Code:42628
Deposited On:04 Jun 2011 12:42
Last Modified:17 May 2016 23:51

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