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1)  ZnS semiconductor nanoparticles
半导体ZnS纳米粒子
2)  semiconductor nanoparticle
半导体纳米粒子
1.
The prepara- tion and characterization of metal nanoparticle and semiconductor nanoparticle on monolayers are introduced.
简述单分子膜法制备金属和半导体纳米粒子,并对纳米粒子的表征讲行了介绍。
3)  Semiconductor nanoparticles
半导体纳米粒子
1.
Semiconductor nanoparticles have a narrow, tunable, symmetric emission spectrum and a broad, continuous excitation spectrum.
鉴于半导体纳米粒子优良的光学特性,如:激发光谱宽,发射光谱窄而对称,光化学稳定,荧光寿命长,荧光量子产率高等,将其应用于生物大分子的分析测试,势必提高分析的灵敏度和选择性。
2.
This thesis focuses on liquid crystal materials doped with semiconductor nanoparticles, which means obtaining liquid crystal devices with low-power features via doping.
本论文所研究的采用半导体纳米粒子掺杂的液晶材料,就是通过掺杂修饰的方法获得具有低功耗特性的液晶材料和器件,相比于设计合成新型液晶材料,这无疑是一条事半功倍的捷径。
4)  ZnS nanoparticles
ZnS纳米粒子
1.
ZnS nanoparticles with different sizes were synthesized by low-temperature solid-state reaction in the presence of different additives.
将不同的添加剂引入到低温固相反应中,快速合成了不同尺寸的ZnS纳米粒子。
2.
In the past decade, ZnS nanoparticles have been investigated intensively due to their excellent optoelectronic properties.
随着ZnS纳米粒子的尺寸减小,其能级的第一激发态将升高,光吸收边将蓝移,使得微粒本身具有独特的量子尺寸效应,表面效应和介电限域效应,从而表现出新奇的光电性质。
3.
In the present work, The influences of temperature and pressure on the structural transformation of ZnS nanoparticles have been investigated employing X ray diffraction (XRD), transmission electron microscopy (TEM) and high-resolution transmission electron microscopy (HRTEM) techniques as following.
5 nm的立方闪锌矿结构的ZnS纳米粒子,采用X射线衍射分析(XRD)、透射电子显微分析(TEM)和高分辨电子显微分析(HRTEM)等技术研究了压力和温度对ZnS纳米粒子的结构转变行为的影响。
5)  inorganic semiconductor nanoparticle
无机半导体纳米粒子
6)  organic semiconductor nanoparticles
有机半导体纳米粒子
补充资料:半导体导电性(见半导体的导电与电荷输运)


半导体导电性(见半导体的导电与电荷输运)
electrical conductivity of semiconductor

  半导体导电性eleetr、ea一conou以,v:‘,_‘ 一J一“。,瓜米早伙鼓幕由乌教着给话_
  
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