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Highly aligned epitaxial nanorods with a checkerboard pattern in oxide films

Authors
Park, S.Horibe, Y.Asada, T.Wielunski, L. S.Lee, N.Bonanno, P. L.O'Malley, S. M.Sirenko, A. A.Kazimirov, A.Tanimura, M.Gustafsson, T.Cheong, S.-W.
Issue Date
Feb-2008
Publisher
American Chemical Society
Citation
Nano Letters, v.8, no.2, pp 720 - 724
Pages
5
Journal Title
Nano Letters
Volume
8
Number
2
Start Page
720
End Page
724
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/57379
DOI
10.1021/nl072848s
ISSN
1530-6984
1530-6992
Abstract
One of the central challenges of nanoscience is fabrication of nanoscale structures with well-controlled architectures using planar thin-film technology. Herein, we report that ordered nanocheckerboards in ZnMnGaO4 films were grown epitaxially on single-crystal MgO substrates by utilizing a solid-state method of the phase separation-induced self-assembly. The films consist of two types of chemically distinct and regularly spaced nanorods with mutually coherent interfaces, similar to 4 x 4 x 750 nm(3) in size and perfectly aligned along the film growth direction. Surprisingly, a significant in-plane strain, more than 2%, from the substrate is globally maintained over the entire film thickness of about 820 nm. The strain energy from Jahn-Teller distortions and the film-substrate lattice mismatch induce the,coherent three-dimensional (3D) self-assembled nanostructure, relieving the volume strain energy while suppressing the formation of dislocations.
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자연과학대학 (물리학과)
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