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ZnSe纳米材料及界面的制备与表征
引用本文:金磊,王建波,贾双凤,徐中领,严雪,邓量子,蔡瑶,卢萍,LEUNG Y P,CHOY W C H.ZnSe纳米材料及界面的制备与表征[J].电子显微学报,2009,28(4):325-334.
作者姓名:金磊  王建波  贾双凤  徐中领  严雪  邓量子  蔡瑶  卢萍  LEUNG Y P  CHOY W C H
作者单位:1. 武汉大学物理科学与技术学院和声光材料与器件教育部重点实验室,湖北武汉,430072;武汉大学电子显微镜中心,湖北武汉,430072;香港大学电机与电子工程学系,香港,薄扶林道
2. 武汉大学物理科学与技术学院和声光材料与器件教育部重点实验室,湖北武汉,430072;武汉大学电子显微镜中心,湖北武汉,430072
3. 香港大学电机与电子工程学系,香港,薄扶林道
基金项目:新世纪优秀人才支持计划,湖北省青年杰出人才基金 
摘    要:利用热蒸发法对ZnSe纳米材料的相控合成进行了研究,制备了多种具有稳定闪锌矿和亚稳纤锌矿结构的ZnSe纳米材料,如ZnSe纳米线、纳米圈、纳米轮及三晶纳米带。同时,在相控合成基础上,通过改变管式炉内反应压强获得了几种同质与异质界面。利用多种透射电子显微学手段对合成的ZnSe纳米材料及相关同质与异质界面进行了深入表征,并对ZnSe纳米材料的生长机理进行了探讨。

关 键 词:硒化锌(ZnSe)  透射电子显微学(TEM)  纳米材料  界面

Fabrication and characterization of ZnSe nanostructures and related interfaces
JIN Lei,WANG Jian-bo,JIA Shuang-feng,XU Zhong-ling,YAN Xue,DENG Liang-zi,CAI Yao,LU Ping,LEUNG Y P,CHOY W C H.Fabrication and characterization of ZnSe nanostructures and related interfaces[J].Journal of Chinese Electron Microscopy Society,2009,28(4):325-334.
Authors:JIN Lei  WANG Jian-bo  JIA Shuang-feng  XU Zhong-ling  YAN Xue  DENG Liang-zi  CAI Yao  LU Ping  LEUNG Y P  CHOY W C H
Affiliation:JIN Lei , WANG Jian-bo , JIA Shuang-feng , XU Zhong-ling , YAN Xue , DENG Liang-zi , CAI Yao , LU Ping , LEUNG Y P, CHOY W C H ( 1. Department of Physics and Key Laboratory of Acoustic and Photonic Materials and Devices of Ministry of Education, Wuhan University, 2. Center for Electron Microscopy, Wuhan University, Wuhan Hubei 430072, China; 3. Department of Electrical and Electronic Engineering, University of Hong Kong, Pokfulam Road, Hong Kong, China)
Abstract:The phase-controlled fabrication of various ZnSe nanostructures has been investigated by thermal evaporation method. A variety of stable zinc blende and metastable wurtzite nanostructures with different morphologies have been synthesized, including the nanowires, nanorings, uanowheels and tri-crystal nanobelts. On the basis of phase-controlled fabrication, several homogeneous and heterogeneous interfaces are obtained through the introduction of reaction pressure variations. The as-grown nanostructures and related interfaces are characterized by various transmission electron microscopy (TEM) techniques. The growth mechanisms have been proposed.
Keywords:zinc selenide (ZnSe)  transmission electron microscopy (TEM)  nanostructures  interface
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