electroluminescence造句
例句与造句
- Measurement of chromaticity of electroluminescence lines
关于场致发光光源色度的测量 - Electroluminescence from eu3 : m complexes
复合体系的电致发光研究 - 2 el electroluminescence features
2 el场致发光器特性 - A study of visible electroluminescence from u si sio2 superlattices p - si structure
结构的可见电致发光研究 - Color organic thin film electroluminescence and passive matrix display
彩色有机薄膜电致发光及动态矩阵显示 - It's difficult to find electroluminescence in a sentence. 用electroluminescence造句挺难的
- Electroluminescence display eld
电激发光显示器 - Transient characteristics of near infra - red electroluminescence in devices doped with erbium
铒近红外发光的瞬态特性 - Organic / polymeric electroluminescence is a newly - emerging display technique
有机聚合物电致发光是一种新兴平板显示技术。 - The emphasis of the article is to study the spectrum of photoluminescence and electroluminescence
本论文主要测定薄膜的光致发光和电致发光特性。 - Luminescence is a general term for light emission , including photoluminescence , electroluminescence and others
发光特性一般包括光致发光,电致发光及其它不同类型所导致的发光等。 - We also prepared some photoelectric devices and explore the mechanisms of photovoltaic conversion and electroluminescence
制备了光电器件,探讨了其光电转换、电致发光等方面的机理。 - Such displays , which are based on the electroluminescence of organic compounds , are said to be thinner and brighter than lcds , and offer wider viewing angles
这种基于有机物通电发光原理制造的显示器,被认为比液晶显示器更薄更亮,而且提供更加宽的可视角度。 - Organic and polymer electroluminescence materials have attracted much interest because of its high luminescence efficiency , full color , processable and so on
有机电致发光材料由于具有高发光效率,亮度和颜色可调,易加工成膜等优良特性,引起了人们的极大兴趣。 - Organic electroluminescence ( oel ) is light - emitting phenomenon arising from luminescent materials in which electricity is transformed into light when turned appropriate voltage on
有机电致发光( organicelectroluminescence , oel )是指发光材料在电场作用下,将电能直接转化为光能的一种发光现象。 - Many ways of doping have also been reported . at the same time , to reduce the onset voltage and to increase the intensity of electroluminescence ( el ) is all very important for el devices
由于硅的平面集成工艺已相当成熟,所以从工艺兼容性考虑,用硅基材料作为发光器件将是最佳的选择,而其获得应用的关键是提高发光效率。
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