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手性模板合成CdS纳米棒
引用本文:薛鹏冲,卢然,金明,张铁锐,苏丽红,赵英英.手性模板合成CdS纳米棒[J].高等学校化学学报,2003,24(7):1172-1174.
作者姓名:薛鹏冲  卢然  金明  张铁锐  苏丽红  赵英英
作者单位:1. 吉林大学化学学院, 长春 130023; 2. 长春师范学院化学系, 长春 130032
基金项目:国家自然科学基金 (批准号 :2 0 1710 17)资助
摘    要:由于纳米材料具有量子尺寸效应及大的比表面积等性质而使其在电子学1]、光学2]、催化3]和陶瓷4]等领域显示出诱人的应用前景. 近年来纳米材料的制备及纳米技术发展迅速, 特别是具有特殊光电活性的新型无机纳米材料的制备已引起人们的普遍关注. 现在合成纳米材料的方法主要包括反相胶束法5]、 LB膜法6]、嵌段共聚物法7]和模板合成法8]. 其中模板合成技术不仅可以通过设计新型的模板分子, 还可通过模板分子的不同自组装行为来调控纳米材料的尺寸和形貌. Stupp等9]曾利用溶致液晶的六方中间相作为模板, 在其纳米孔隙中成功地合成了具有六方排列超晶格纳米结构的材料. 本文以双亲性丙氨酸衍生物为模板, 在不同的化学微环境下合成了结构不同的CdS纳米棒.

关 键 词:手性模板  CdS纳米棒  N-十二酰基丙氨酸  
文章编号:0251-0790(2003)07-1172-03
收稿时间:2002-09-23

Synthesis of CdS Nanorods with Chiral Template
XUE Peng-Chong,LU Ran,Jin Ming,ZHANG Tie-Rui,SU Li-Hong,ZHAO Ying-Ying.Synthesis of CdS Nanorods with Chiral Template[J].Chemical Research In Chinese Universities,2003,24(7):1172-1174.
Authors:XUE Peng-Chong  LU Ran  Jin Ming  ZHANG Tie-Rui  SU Li-Hong  ZHAO Ying-Ying
Institution:1. College of Chemistry, Jilin University, Changchun 130023, China; 2. Department of Chemistry, Changchun Normal College, Changchun 130032, China
Abstract:In the paper, two kinds of CdS nanorods with diameter of 50-150 nm were synthesized by using amphiphilic alanine as the templating reagent. XRD, TEM and polarized light microscopy were used to examine the course of CdS growth. The nanorod with a hexagonal pore microstructure was fabricated when the mesophase exhibited hexagonal morphology of the polarized light microscopy image. The XRD pattern of the nanorods with hexagonal pore microstructure showed a clear peak in 2H=0.88° which suggested the existence of hexagonal pore. While the mesophase disappeared and isotropic polarized light microscopy image shows that CdS would propagate into nanorod without hexagonal pore. It was deduced that nanorods with hexagonal pore grow in the hole of hexagonal liquid crystal and those CdS growth without hexagonal pore are in isotropic solution by the absorption of amphilphilic alanine. It was suggested that different nanostructures could be generated under various chemical micro-environments to reveal their special functionalities.
Keywords:Chiral template  CdS nanorod  N-Lauroyl alanine
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