The photoluminescence ( pl ) property of the composite of porous silicon and pmma was investigated 这些研究为制备性能良好的多孔硅基发光器件奠定了基础。
2 . the body of display screen : it is made up of controlling circuitry , driver circuitry , power , light parts of apparatus 2显示屏体:由控制电路驱动电路电源发光器件等组成。
This paper states design approach , computing process and result of microcavity organic light - emitting device ( moled ) 论文论述了微腔有机发光器件( moled )的设计方法、计算过程和结果。
In order to realize full color display and improve luminous efficiency , oled with microcavity is formed 为了实现有机发光的彩色显示、提高发光效率,将有机发光器件( oled )形成微腔结构。
Semicoductor laser ( ld ) which is a current - driven device has gotten a drastic development since it was invented in 1960s 半导体激光器是一种电致发光器件,自60年代被发明以来,得到了迅猛的发展。
Organic elctroluminescent ( el ) devices are of both academic and industrial interest due to its potential application in display technology 由于有机电致发光器件在彩色平板显示等领域具有极大的应用前景,已引起广泛的关注。
Organic elctroluminescent ( el ) devices are of both academic and industrial interest due to its potential application in display technology 摘要由于有机电致发光器件在彩色平板显示等领域具有极大的应用前景,已引起广泛的关注。
Basic research work aiming at these problems has been reported in this dissertation , especially on the research of fabrication 针对聚合物发光器件目前所存在的问题,本论文的研究重点在于器件的制备工艺,并取得了一定的研究成果。
The work on the simulation of filter , which was applied to the oled to improve the characteristic of chromatics of emission , was introduced 有机发光器件的载流子注入、传输、复合过程与器件本身的材料、结构、工作电压密切相关。
This could increase the work function of ito , which would decrease the device threshold voltage and increase the luminescence efficiency consequently 因此,采用氧等离子体处理的ito薄膜作为oled的阳极将降低发光器件的开启电压,提高其发光效率。