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CdS半导体超微粒子的光学性质
引用本文:赵家龙,邹炳锁.CdS半导体超微粒子的光学性质[J].发光学报,1992,13(2):117-122.
作者姓名:赵家龙  邹炳锁
作者单位:1. 中国科学院长春物理研究所, 长春 130021;2. 吉林大学化学系, 长春 130023
基金项目:国家自然科学基金和中国科学院长春物理研究所激发态物理开放实验室基金资助课题
摘    要:本文研究了水溶胶中的CdS半导体超微粒子和有机溶胶中的粒子表面被有机分子化学修饰的CdS超微粒子的光学性质.我们观察到,当粒子尺寸小于5nm时,CdS超微粒子表现出明显的尺寸量子化效应,并指出CdS超微粒子的表面修饰,增强了它们的发光强度,显著地影响了它们的光学性质。

关 键 词:半导体  超微粒子  光学性质  硫化镉
收稿时间:1991-05-14

OPTICAL PROPERTIES OF CdS SEMICONDUCTOR ULTRAFINE PARTICLES IN HYDROSOLS AND ORGANOSOLS
Zhao Jialong,Zhang Jisen,Jin Chunming,Zhou Fangce,Gao Ying,Huang Shihua,Yu Jiaqi,Zou Bingsuo,Li Shoutian,Xiao Liangzhi.OPTICAL PROPERTIES OF CdS SEMICONDUCTOR ULTRAFINE PARTICLES IN HYDROSOLS AND ORGANOSOLS[J].Chinese Journal of Luminescence,1992,13(2):117-122.
Authors:Zhao Jialong  Zhang Jisen  Jin Chunming  Zhou Fangce  Gao Ying  Huang Shihua  Yu Jiaqi  Zou Bingsuo  Li Shoutian  Xiao Liangzhi
Institution:1. Changchun Institute of Physics, Academia Sinica, Changchun 130021;2. Department of Chemistry, Jilin University, Changchun 130023
Abstract:In the paper, we report the optical properties of CdS semiconductor ultrafine particles in hydrosols and those of CdS semiconductor ultrafine particles in organosols in which the surfaces of the particles are coated with a layer of organic surfactant molecules. The experimental results show that surface modification of the particles significantly affects their optical properties.CdS hydrosols and organosols were prepared through colloidal chemical method. The particle size and size distribution were determined by TEM and small angk X-ray scattering. The results show that the colloidal particle size is below 10nm.The absorption, excitation and emission spectra of CdS particles in the hydrosols and organosols were measured and discussed, we conclude that when the particle size is less than 5nm,the particles exhibit obvious quantum size effects.The surface modification of the particles effectively removes the surface defects of the particles, and strongly enhances the intensity of interband luminescence. On the other hand, a number of discrete electronic transitions due to quantum confinement effects are observed and explained by the effective mass approximation.
Keywords:
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