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Patterned growth and cathodoluminescence of conical boron nitride nanorods

Zhang, H. Z., Phillips, M. R., Fitzgerald, J. D., Yu, J. and Chen, Ying 2006, Patterned growth and cathodoluminescence of conical boron nitride nanorods, Applied physics letters, vol. 88, no. 9, pp. 1-4.

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Title Patterned growth and cathodoluminescence of conical boron nitride nanorods
Author(s) Zhang, H. Z.
Phillips, M. R.
Fitzgerald, J. D.
Yu, J.
Chen, Ying
Journal name Applied physics letters
Volume number 88
Issue number 9
Start page 1
End page 4
Total pages 4
Publisher American Institute of Physics
Place of publication New York, N.Y.
Publication date 2006
ISSN 0003-6951
1077-3118
Keyword(s) boron compounds
cathodoluminescence
electromagnetic wave emission
Summary We demonstrate a simple and effective approach for growing large-scale, high-density, and well-patterned conical boron nitride nanorods. A catalyst layer of Fe(NO3)3 was patterned on a silicon substrate by using a copper grid as a mask. The nanorods were grown via annealing milled boron carbide powders at 1300 °C in a flow of nitrogen gas. The as-grown nanorods exhibit uniform morphology and the catalyst pattern precisely defines the position of nanorod deposition. Cathodoluminescence (CL) spectra of the nanorods show two broad emission bands centered at 3.75 and 1.85 eV. Panchromatic CL images reveal clear patterned structure
Notes This article may be downloaded for personal use only. Any other use requires prior permission of the author and the American Institute of Physics. The following article appeared in Zhang, H. Z., Phillips, M. R., Fitzgerald, John, Yu, J. and Chen, Ying 2006, Patterned growth and cathodoluminescence of conical boron nitride nanorods, Applied physics letters, vol. 88, no. 9, pp. 093117-1-093117-4, and may be found at http://dx.doi.org/10.1063/1.2179144.
Language eng
Field of Research 100707 Nanomanufacturing
Socio Economic Objective 970110 Expanding Knowledge in Technology
HERDC Research category C1.1 Refereed article in a scholarly journal
ERA Research output type C Journal article
Copyright notice ©2006, American Institute of Physics.
Persistent URL http://hdl.handle.net/10536/DRO/DU:30016454

Document type: Journal Article
Collections: Institute for Technology Research and Innovation
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Every reasonable effort has been made to ensure that permission has been obtained for items included in DRO. If you believe that your rights have been infringed by this repository, please contact drosupport@deakin.edu.au.