electroluminescence 基本解释
n. 电(致)发光;场致发光
electroluminescence 词组短语
electroluminescence 双语例句
- 1、
White organic electroluminescence is one approach to achieve full-color flat panel display.
白色有机发光器件是实现彩色平板显示的重要方案之一。 - 2、
The application of electroluminescence imaging to quality monitor in crystalline silicon cells and modules
电致发光成像在晶体硅电池和组件质量监测中的应用 - 3、
electroluminescence characteristics of organic thin film pumped by photoluminescence
光致激励的有机薄膜器件的电致发光特性 - 4、
electroluminescence ( EL) from Si-based organic microcavity has firstly been reported in the literature.
报道了硅基有机微腔的电致发光(EL)。 - 5、
The research progress of thiophene compounds in photoelectric materials such as electroluminescence materials and photosensitizers was summarized.
有机电致发光材料是光电信息功能材料领域的研究热点之一。 - 6、
The electroluminescence of ZnO Nanorod/ organic Material Heterostructure Devices
ZnO纳米棒/有机材料异质结电致发光特性的研究 - 7、
Different Effect of Nanocrystals on the electroluminescence and Photoluminescence in Er-doped SiO_2 Films
纳米硅微晶对于Er离子掺杂的SiO2薄膜的光致发光和电致发光的不同影响 - 8、
Organic electroluminescence ( OLED) is recently a research highlight in the world.
有机电致发光(OLED)是近年来国际上的一个研究热点。 - 9、
The Role of BCP in electroluminescence of Multilayer Organic Light-Emitting Devices
BCP在多层有机电致发光器件中的作用 - 10、
electroluminescence Characteristics From Polymeric Insulating Materials Under AC Voltage
交流电压下聚合物绝缘材料电致发光特性 - 11、
Synthesis and electroluminescence Characteristics of Aluminum and Gallium Complexes Containing 8-Hydroxyquinoline Ligand
含喹啉配体的铝和镓(Ⅲ)金属配合物的合成与电致发光特性研究 - 12、
Under these conditions, the plasma becomes the center of a luminous phenomenon ( electroluminescence).
在这种条件下,等离子体变成了辉光放电现象(即场致发光现象)的中心。 - 13、
The present invention is related to an imidazole ring-containing compound and an organic electroluminescence display device using the same.
本发明提供含咪唑环的化合物和使用该化合物的有机电致发光显示器。 - 14、
Organic Red electroluminescence Devices Based on PVK with High Color Purity and High Stability
基于PVK的高色纯度高稳定性有机电致红光器件 - 15、
Study on electroluminescence characteristic of a new phosphorescent materials
一种新型磷光材料的电致发光特性研究 - 16、
Organic-inorganic Complex electroluminescence and White Emission Via Organic Heterojunction
有机无机复合电致发光与有机异质结白光器件的研究 - 17、
Efficient electroluminescence Devices with Rare Earth Ion Implanted Silicon MOS Structures
稀土离子注入的硅材料MOS结构高效率电致发光器件 - 18、
Influence of electroluminescence and recombination with ETL thickness in PTPD/ Alq_3 device
PTPD/Alq3器件ETL厚度对发光和复合的影响 - 19、
The Study on electroluminescence and Current Characters of PET Films under High Dc Fields
高直流电场下PET薄膜的电致发光及电流特性 - 20、
The influences of surface passivation of photoluminescence and electroluminescence properties of porous silicon have been presented.
报道多孔硅的表面钝化对其光致发光和电致发光的影响。 - 21、
MS-junction luminescent diodes have been fabricated. Yellow electroluminescence has been obtained under reverse biased excitation.
利用这一外延层制作了MS结发光二极管,在反向偏压下获得黄色电致发光。 - 22、
This paper was mainly concerned on the recent research progress of thiophene compounds in electroluminescence materials.
较详细地对噻吩类化合物在电致发光材料领域的研究进展进行了综述。 - 23、
The basic principles of organic electroluminescence and organic light emitting diodes are presented.
本文简述了有机电致发光及有机发光二极管的基本原理; - 24、
Comparision of the electroluminescence and cathodoluminescence spectra for two type diodes.
比较两类二极管(E和C)的电致发光和阴极射线发光光谱。 - 25、
The electroluminescence of semiconducting polymers and the prospect of its wide applications have drawn a great attraction.
半导体聚合物的电发光现象及其广阔的应用前景,激发了人们的研究兴趣。 - 26、
The phenomenon of electroluminescence of diamond thin films is reported.
报道了金刚石薄膜电致发光现象。 - 27、
The results show that blue electroluminescence could be realized using ZnS: Ag and ZnS: Cu.
结果表明,利用ZnS:Ag和ZnS:Cu均可获得蓝色电致发光。 - 28、
Photoluminescence and electroluminescence are important means to the study of GaN-based light-emitting materials and devices.
光致发光、电致发光等技术是研究GaN基发光材料和器件重要的手段。 - 29、
The film microstructures were characterized by Raman and TEM. Photoluminescence and electroluminescence properties were discussed in the visible and infrared region.
利用Raman和TEM对多层膜的结构和晶化特性进行了表征,对器件在可见和红外波段的光致发光和电致发光性质做了研究,并对发光来源做了分析。

