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Controlled growth of two-dimensional 'single-crystal' hafnia networks by surface modulation
Z. Q. Shen; L. L. He; J. F. He; H. M. Cheng; D. X. Li
2006
Source PublicationNanotechnology
ISSN0957-4484
Volume17Issue:5Pages:1207-1211
AbstractTwo-dimensional single-crystal' hafnia networks were synthesized by the high temperature gas-solid reaction method. Transmission electron microscopy investigation shows that these networks exhibit micrometre-scale external dimensions and nanometre-scale holes and frame width. The formation of these novel structures is based on the vapour-solid growth mechanism, and the boron nitride deposited on the networks' surface plays a key role in the growth procedure by selectively influencing the growth rate of the crystal faces. This process involves the control of crystal surface properties and adsorption of the growth unit, and is extendable to the fabrication of nanosystems either in two dimensions or in three dimensions.
description.departmentchinese acad sci, met res inst, shenyang natl lab mat sci, shenyang 110016, peoples r china.;he, ll (reprint author), chinese acad sci, met res inst, shenyang natl lab mat sci, wenhua rd 72, shenyang 110016, peoples r china;zqshen@imr.ac.cn llhe@imr.ac.cn
KeywordOne-dimensional Nanostructures Boron-nitride Cdse Nanocrystals Nanowires Silicon Nanolithography Nanoribbons Dielectrics Morphology Stability
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WOS IDWOS:000236496400015
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Cited Times:4[WOS]   [WOS Record]     [Related Records in WOS]
Document Type期刊论文
Identifierhttp://ir.imr.ac.cn/handle/321006/34455
Collection中国科学院金属研究所
Recommended Citation
GB/T 7714
Z. Q. Shen,L. L. He,J. F. He,et al. Controlled growth of two-dimensional 'single-crystal' hafnia networks by surface modulation[J]. Nanotechnology,2006,17(5):1207-1211.
APA Z. Q. Shen,L. L. He,J. F. He,H. M. Cheng,&D. X. Li.(2006).Controlled growth of two-dimensional 'single-crystal' hafnia networks by surface modulation.Nanotechnology,17(5),1207-1211.
MLA Z. Q. Shen,et al."Controlled growth of two-dimensional 'single-crystal' hafnia networks by surface modulation".Nanotechnology 17.5(2006):1207-1211.
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