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semiconductor nano
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  “semiconductor nano”译为未确定词的双语例句
     Progress of Studies on the Relaxation Processes of Photoinduced Carriers in Semiconductor Nano granular Embedded in Medium Matrix
     半导体/介质纳米颗粒镶嵌材料中光致载流子弛豫过程的研究进展
短句来源
     Ultrafast Laser Spectroscopy on Semiconductor Nano granular Embedded in Medium Matrix
     半导体/介质纳米颗粒镶嵌材料的超快激光光谱学
短句来源
     This paper reports the recent advance of studies on the relaxation processes of photoinduced carriers in semiconductor nano granular embedded in medium matrix according to the requirement of all optics communications.
     从全光通信对光子器件的要求出发 ,报道了近年来在半导体 /介质纳米颗粒镶嵌材料中光致载流子弛豫过程的研究进展。
短句来源
     In this paper,the recent advance on ultrafast laser spectroscopy with methods,techniques and mechanism analyses for the dynamics in semiconductor nano granular embedded in medium marix is reviewed.
     报道了近年来半导体 /介质纳米颗粒镶嵌材料中超快过程的激光光谱学的主要测量方法和技术、探测结果、机理分析和我们的一些见解。
短句来源
     The results show AFM anode oxidation is a possible effective method to prepare metal oxidized semiconductor nano devices.
     实验结果表明 AFM阳极氧化是制备金属氧化物半导体纳米器件的较好方法
短句来源
  相似匹配句对
     Study on synthesis of nano - semiconductor
     纳米半导体的合成现状
短句来源
     Critical technology of nano semiconductor material
     纳米半导体材料的评价技术
短句来源
     Semiconductor Arrester
     半导体放电管
短句来源
     Ball semiconductor
     球形半导体技术
短句来源
     nano-,30%;
     微型浮游生物 30 % ;
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  semiconductor nano
The results are discussed in the context of the potential applications of metal and semiconductor nano-particles in areas including photocatalysis and photoelectrochemistry.
      
The results are discussed in the context of the potential applications of metal and semiconductor nano-particles in areas including photocatalysis and photoelectrochemistry.
      
In this review, we reported our recent studies on controlled growth of sulfide and oxide semiconductor nano-and micro-structures via gamma-irradiation route.
      
Using the protein cage, apoferritin, researchers have synthesized various kinds of nano-particles such as metal oxide nano-particles (Co, Ni, Cr nano-particles) and semiconductor nano-particles (CdSe, ZnSe) with a diameter of 7 nm.
      
Our calculated results are useful for the application of semiconductor nano-structures in electronic and photoelectric devices.
      
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This paper reports the recent advance of studies on the relaxation processes of photoinduced carriers in semiconductor nano granular embedded in medium matrix according to the requirement of all optics communications.The life time of exciton can be diminished significantly due to the strong quantum confinement.However,there are a lot of trapped states existing which have long life time and restrict the optical response speed of the materials(except group Ⅰ Ⅶ semiconductors).

从全光通信对光子器件的要求出发 ,报道了近年来在半导体 /介质纳米颗粒镶嵌材料中光致载流子弛豫过程的研究进展。强量子限制效应可以大大地减小激子的寿命 ,但这种材料 ( - 族例外 )普遍存在着长寿命的俘获态 ,制约着这种材料的光学响应速度的提高

In this paper,the recent advance on ultrafast laser spectroscopy with methods,techniques and mechanism analyses for the dynamics in semiconductor nano granular embedded in medium marix is reviewed.

报道了近年来半导体 /介质纳米颗粒镶嵌材料中超快过程的激光光谱学的主要测量方法和技术、探测结果、机理分析和我们的一些见解。

A novel method of synthezing MS(M=Zn,Cd)semiconductor nano-powders is presented. It is a simple, easy operation and low cost route for production of nano-powders in wide range.The nano-crystallites from 1.8nm to 5nm in diameter with consistent crystal structure and mono-dispersivity are prepared in three-step reaction.The diameter can be controlled by adjusting the length of polymer or by multiple passes through the process.The transmission electron microscopy(TEM) and X-ray powder diffraction(XRD)...

A novel method of synthezing MS(M=Zn,Cd)semiconductor nano-powders is presented. It is a simple, easy operation and low cost route for production of nano-powders in wide range.The nano-crystallites from 1.8nm to 5nm in diameter with consistent crystal structure and mono-dispersivity are prepared in three-step reaction.The diameter can be controlled by adjusting the length of polymer or by multiple passes through the process.The transmission electron microscopy(TEM) and X-ray powder diffraction(XRD) are used to characterize the structure of these nano-powders respectively.

本文介绍一种适合制备MS(M =Zn ,Cd)半导体纳米粉末的化学合成方法。此方法成本低 ,易操作 ,且具有一定的广泛性。本合成通过调节聚合链长和反应循环次数可在 1.8nm到 5nm范围内对纳米粒径进行很好的控制。透射电镜和X射线粉末衍射对所制得的纳米粉末进行了表征。

 
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