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1)  transparent conducting
透明导电性
2)  transparent conductive
透明导电
1.
Research and development of flexible transparent conductive films;
柔性透明导电薄膜的研究现状、应用及趋势
2.
F sputtering method is employed to deposit ZnO:A1 film on PET flake in this paper,The experiment results show that the deposition pressure has great influence on the surface morphology, structure, electric and optical properties of Zinc Oxide transparent conductive film.
采用射频溅射方法在聚脂 (PET)胶片上沉积ZnO∶Al薄膜 ,实验结果表明沉积压强对氧化锌透明导电薄膜的表面形貌、结构、光电性能等有较大的影响 ,在低的沉积压强下薄膜具有很好的(0 0 2 )结构 ,有优良的光、电综合性能。
3.
At first the development of transparent conductive oxide film is summarized and the advantages of aluminium doped zinc oxide (AZO) film are discussed in this paper.
本文首先对透明导电薄膜(TCO)的发展进行了总结,讨论了铝搀杂氧化锌薄膜(AZO)的性能优点,之后对AZO薄膜的晶体结构、搀杂、制备方法、用途进行了综合描述,并指出了透明导电薄膜的发展趋势。
3)  transparent conductive films
透明导电膜
1.
Study on Ga_2O_3 deep ultraviolet transparent conductive films with Al nano-interlayer
纳米Al夹层Ga_2O_3深紫外透明导电膜的研究
4)  transparent conductive film
透明导电膜
1.
Transparent conductive film was prepared by dip coating method with sol-gel.
采用溶胶凝胶法浸渍提拉工艺制备透明导电膜,并考察了Sb3+的掺杂量、膜的厚度、热处理温度对薄膜电阻的影响,以及不同的处理方法对薄膜透过率的影响,制得透明导电膜的电阻率最低可达ρ=16×10-3Ω·cm,薄膜连续性、致密性好,平均透光率达到90%以上。
2.
In this paper,resent progress of transparent conductive film technology and its quality is reviewed,and its developing prospects are concluded.
论述了透明导电膜工艺及其发展水平,对其发展方向提出了展望。
3.
Effects of the conductivity of transparent conductive film on the optically transparent band-pass frequency selective surface (FSS) are investigated by using Galerkin s method in the spectral domain.
运用谱域Galerkin法对光学透明带通频率选择表面(FSS)进行了分析计算,研究了透明导电膜的电导率对光学透明带通FSS频率选择特性的影响。
5)  transparent and conductive film
透明导电膜
6)  transparent conducting film
透明导电膜
1.
This article according to the practical application need, elaborated the ITO transparent conducting film basic principle, introduced the membrane department s design process, corresponding plates the system craft, the experiment operating system application and the principle and so on.
本文根据实际应用需要,论述了透明导电膜的基本原理,介绍了膜系的设计过程,相应的镀制工艺,实验操作系统的应用及原理等。
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_
  
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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