Vertical growth and resonator properties of hexagonally shaped zinc oxide nanonails
Data(s) |
01/02/2010
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Resumo |
We synthesized vertically aligned nail-shaped ZnO nanocrystal arrays on silicon substrates via a combination of a carbothermal reduction method and textured ZnO seeding layers that were precoated on silicon substrates by thermally decomposing zinc acetate, and studied their optical properties using cathodoluminescence (CL) and photoluminescence techniques. The ZnO nanonails show a sharp band-gap edge UV emission and a defect-related broad green emission. Monochromatic CL images of an individual ZnO nanonail show variations in spatial distributions of respective CL bands that had different origins. We attribute the spatial variation of CL images to an uneven distribution of luminescent defects and/or a structure-related light out-coupling from hexagonal ZnO nanostructures. The most distinct CL feature from the hexagonal head of an individual ZnO nanonail was the occurrence of a series of distinct resonant peaks within the visible wavelength range. It appeared that the head of a nanonail played the role of a hexagonal cavity so that polarizationdependent whispering gallery modes were stimulated by electron beam excitation. |
Formato |
application/pdf |
Identificador | |
Publicador |
American Scientific Publishers |
Relação |
http://eprints.qut.edu.au/46051/1/JNN.pdf DOI:10.1166/jnn.2010.2569 Liu, Jinzhang, Lee, Soonil, Park, Kyung Ho, Ahn, YeongHwan, Park, Ji-Yong, & Koh, Ken Ha (2010) Vertical growth and resonator properties of hexagonally shaped zinc oxide nanonails. Journal of Nanoscience and Nanotechnology, 10(9), 6150--6154(5). |
Direitos |
Copyright 2010 American Scientific Publishers |
Fonte |
Faculty of Built Environment and Engineering; School of Engineering Systems |
Palavras-Chave | #020402 Condensed Matter Imaging #020502 Lasers and Quantum Electronics #020504 Photonics Optoelectronics and Optical Communications #091205 Functional Materials #ZnO #Nanonails #Wispering Gallery Mode Resonances #Cathodoluminescence #Vapor-phase growth |
Tipo |
Journal Article |