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1)  nano_scale semiconductor particles
纳米级半导体微晶
1.
Glass doped with nano_scale semiconductor particles has obvious nonlinear optical properties and the quantum_size effect is large.
纳米级半导体微晶掺入玻璃可产生非线性光学性质 ,其量子尺寸效应非常明显。
2)  Semiconductor nanocrystals
半导体纳米晶体
1.
Some typical doping methods and technics of Ⅱ-Ⅵ group semiconductor nanocrystals are presented.
介绍了Ⅱ-Ⅵ族半导体纳米晶体的掺杂技术和几种典型的掺杂工艺;综述了掺杂对半导体纳米晶体的光、电特性的影响;列举了近几年掺杂技术取得的研究成果;重点阐述了现阶段利用胶体法进行半导体纳米晶体掺杂的掺杂机理、以及掺杂效率所存在的问题。
3)  semiconductor nanocrystals
半导体纳米晶
1.
In recent years,the applications ofⅡ-Ⅵsemiconductor nanocrystals in combination with polymer in the fields of optoelectronic devices have become the research focus in the domestic and overseas areas.
Ⅱ-Ⅵ族半导体纳米晶与聚合物的复合物在光电器件领域的应用近年来成为国内外研究的热点。
2.
The colloidal semiconductor nanocrystals are playing more and more important role in the aspect of optical devices, disease diagnosis, laser, etc.
半导体纳米晶由于其独特的光学和电学性质在光学器件、医疗诊断、激光等方面有了越来越重要的应用。
3.
Due to quantum confinement effect,band gap of semiconductor nanocrystals(NCs) is dependent on the particle size.
由于量子限域效应,半导体纳米晶的能带宽随粒子大小而改变。
4)  semiconductor nanocrystal
半导体纳米晶
1.
Due to their unique size-dependent optical and electronic properties, semiconductor nanocrystals have attracted a great deal of attention in recent decades.
半导体纳米晶材料由于具有表面效应、量子尺寸效应、介电限域效应、特殊的热学性质、光学性质及光电化学性质等而成为材料科学和化学领域的研究热点。
2.
CdSe/CdS core/shell semiconductor nanocrystals(CdSe/CdS C/S NCs) were prepared by CdS epitaxial growth on the surface of CdSe semiconductor NCs in aqueous phase through co-precipitation.
采用共沉淀法在水相中将CdS外延生长于CdSe半导体纳米晶(CdSe NCs)表面,制备了结晶形态较好的CdSe/CdS核壳结构半导体纳米晶(CdSe/CdSC/SNCs),并改善了CdSe NCs的荧光性能。
5)  InN semiconductor nanocrystals
InN半导体纳米晶
1.
Study on the transformation activation energy in InN semiconductor nanocrystals;
InN半导体纳米晶相变活化能的研究
6)  semiconductor nanoparticle
半导体纳米微粒
1.
This paper reviews some methods for constructing semiconductor nanoparticles/PANI composite materials,which were developed by us in recent years.
简述了近年来新发展的几种半导体纳米微粒/聚苯胺复合材料的构建方法,总结了半导体纳米微粒/聚苯胺复合材料性能表征的部分工作,讨论了半导体纳米微粒的尺寸大小、粒度分布及复合材料的光学和光电化学性能研究等。
补充资料:半导体晶片抛光机


半导体晶片抛光机


半导体晶片抛光机
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