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0ne-Dimensional (l-D) Nanoscale Heterostructures
引用本文:Guozhen SHEN,;Di CHEN,;Yoshio BANDO,;Dmitri GOLBERG. 0ne-Dimensional (l-D) Nanoscale Heterostructures[J]. 材料科学技术学报, 2008, 24(4): 541-549
作者姓名:Guozhen SHEN,  Di CHEN,  Yoshio BANDO,  Dmitri GOLBERG
作者单位:[1]National Institute for Materials Science, Tsukuba 305-0044, Ibaraki, Japan; [2]Department of Electrical Engineering, University of Southern California, Los Angeles, CA 90089, USA
基金项目:We thank Dr. X.S.Fang at National Institute for Materials Sciences (Japan), Prof. C.H.Ye at Institute for Solid State Physics, Chinese Academy of Sciences (China), Prof. J.H.Zhan at Shandong University (China), Prof. L.W.Yin at Shandong University (China), Prof. Y.H. Gao at Huazhong University of Science and Technology (China) and Prof. J.Q.Hu at Donghua University (China) for helpful discussion and their contributions to the mate- rials reviewed in this paper.
摘    要:One-dimensional (l-D) nanostructures have been attracted much attention as a result of their exceptional properties, which are different from bulk materials. Among 1-D nanostructures, 1-D heterostructures with modulated compositions and interfaces have recently become of particular interest with respect to potential applications in nanoscale building blocks of future optoelectronic devices and systems. Many kinds of methods have been developed for the synthesis of 1-D nanoscale heterostructures. This article reviews the most recent development, with an emphasize on our own recent efforts, on 1-D nanoscale heterostructures, especially those synthesized from the vapor deposition methods, in which all the reactive precursors are mixed together in the reaction chamber. Three types of 1-D nanoscale heterostructures, defined from their morphologies characteristics, are discussed in detail, which include 1-D co-axial core-shell heterostructures, 1-D segmented heterostructures and hierarchical heterostructures. This article begins with a brief survey of various methods that have been developed for synthesizing 1-D nanoscale heterostructures and then mainly focuses on the synthesis, structures and properties of the above three types of nanoscale heterostructures. Finally, this review concludes with personal views towards the topic of 1-D nanoscale heterostructures.

关 键 词:异质结构  化学  蒸汽  吸附作用  实验研究
收稿时间:2007-12-11

One-Dimensional (1-D) Nanoscale Heterostructures
Guozhen SHEN,Di CHEN,Yoshio BANDO,Dmitri GOLBERG. One-Dimensional (1-D) Nanoscale Heterostructures[J]. Journal of Materials Science & Technology, 2008, 24(4): 541-549
Authors:Guozhen SHEN  Di CHEN  Yoshio BANDO  Dmitri GOLBERG
Affiliation:National Institute for Materials Science, Tsukuba 305-0044, Ibaraki, Japan
Abstract:One-dimensional (1-D) nanostructures have been attracted much attention as a result of their exceptional properties, which are different from bulk materials. Among 1-D nanostructures, 1-D heterostructures with modulated compositions and interfaces have recently become of particular interest with respect to potential applications in nanoscale building blocks of future optoelectronic devices and systems. Many kinds of methods have been developed for the synthesis of 1-D nanoscale heterostructures. This article reviews the most recent development, with an emphasize on our own recent efforts, on 1-D nanoscale heterostructures, especially those synthesized from the vapor deposition methods, in which all the reactive precursors are mixed together in the reaction chamber. Three types of 1-D nanoscale heterostructures, defined from their morphologies characteristics, are discussed in detail, which include 1-D co-axial core-shell heterostructures, 1-D segmented heterostructures and hierarchical heterostructures. This article begins with a brief survey of various methods that have been developed for synthesizing 1-D nanoscale heterostructures and then mainly focuses on the synthesis, structures and properties of the above three types of nanoscale heterostructures. Finally, this review concludes with personal views towards the topic of 1-D nanoscale heterostructures.
Keywords:Nanostructures  Heterostructures  One-dimensional  Chemical vapor deposition
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