期刊文献+
共找到8篇文章
< 1 >
每页显示 20 50 100
Display Search预测EL照明市场十年内将达60亿美元
1
《中国照明》 2009年第4期28-28,共1页
近期,美国Display Search公布预测称,有机EL照明市场将从2011年开始迅速扩大,到2018年全球销售额将达60亿美元。预计2014年之前销售额将超过被动式有机EL显示器。
关键词 有机el显示器 display 照明市场 美元 预测 销售额 被动式
下载PDF
Recent Advances in Patterning Strategies for Full‑Color Perovskite Light‑Emitting Diodes
2
作者 Gwang Heon Lee Kiwook Kim +2 位作者 Yunho Kim Jiwoong Yang Moon Kee Choi 《Nano-Micro Letters》 SCIE EI CSCD 2024年第3期99-137,共39页
Metal halide perovskites have emerged as promising light-emitting materials for next-generation displays owing to their remarkable material characteristics including broad color tunability,pure color emission with rem... Metal halide perovskites have emerged as promising light-emitting materials for next-generation displays owing to their remarkable material characteristics including broad color tunability,pure color emission with remarkably narrow bandwidths,high quantum yield,and solution processability.Despite recent advances have pushed the luminance efficiency of monochromic perovskite light-emitting diodes(PeLEDs)to their theoretical limits,their current fabrication using the spincoating process poses limitations for fabrication of full-color displays.To integrate PeLEDs into full-color display panels,it is crucial to pattern red–green–blue(RGB)perovskite pixels,while mitigating issues such as cross-contamination and reductions in luminous efficiency.Herein,we present state-of-the-art patterning technologies for the development of full-color PeLEDs.First,we highlight recent advances in the development of efficient PeLEDs.Second,we discuss various patterning techniques of MPHs(i.e.,photolithography,inkjet printing,electron beam lithography and laserassisted lithography,electrohydrodynamic jet printing,thermal evaporation,and transfer printing)for fabrication of RGB pixelated displays.These patterning techniques can be classified into two distinct approaches:in situ crystallization patterning using perovskite precursors and patterning of colloidal perovskite nanocrystals.This review highlights advancements and limitations in patterning techniques for PeLEDs,paving the way for integrating PeLEDs into full-color panels. 展开更多
关键词 PEROVSKITE Light-emitting diode full-color display High-resolution patterning elECTROLUMINESCENCE
下载PDF
Characteristics and techniques of GaN-based micro-LEDs for application in next-generation display 被引量:8
3
作者 Zhou Wang Xinyi Shan +1 位作者 Xugao Cui Pengfei Tian 《Journal of Semiconductors》 EI CAS CSCD 2020年第4期75-80,共6页
Due to the excellent optoelectronic properties,fast response time,outstanding power efficiency and high stability,micro-LED plays an increasingly important role in the new generation of display technology compared wit... Due to the excellent optoelectronic properties,fast response time,outstanding power efficiency and high stability,micro-LED plays an increasingly important role in the new generation of display technology compared with LCD and OLED display.This paper mainly introduces the preparation methods of the GaN-based micro-LED array,the optoelectronic characteristics,and several key technologies to achieve full-color display,such as transfer printing,color conversion by quantum dot and local strain engineering. 展开更多
关键词 micro-LED GaN full-color display transfer printing color conversion
下载PDF
Optical cross-talk reduction in a quantumdot-based full-color micro-light-emitting-diode display by a lithographic-fabricated photoresist mold 被引量:28
4
作者 HUANG-YU LIN CHIN-WEI SHER +7 位作者 DAN-HUA HSIEH XIN-YIN CHEN HUANG-MING PHILIP CHEN TENG-MING CHEN KEI-MAY LAU CHYONG-HUA CHEN CHIEN-CHUNG LIN HAO-CHUNG KUO 《Photonics Research》 SCIE EI 2017年第5期411-416,共6页
In this study, a full-color emission red–green–blue(RGB) quantum-dot(QD)-based micro-light-emitting-diode(micro-LED) array with the reduced optical cross-talk effect by a photoresist mold has been demonstrated. The ... In this study, a full-color emission red–green–blue(RGB) quantum-dot(QD)-based micro-light-emitting-diode(micro-LED) array with the reduced optical cross-talk effect by a photoresist mold has been demonstrated. The UV micro-LED array is used as an efficient excitation source for the QDs. The aerosol jet technique provides a narrow linewidth on the micrometer scale for a precise jet of QDs on the micro-LEDs. To reduce the optical cross-talk effect,a simple lithography method and photoresist are used to fabricate the mold, which consists of a window for QD jetting and a blocking wall for cross-talk reduction. The cross-talk effect of the well-confined QDs in the window is confirmed by a fluorescence microscope, which shows clear separation between QD pixels. A distributed Bragg reflector is covered on the micro-LED array and the QDs' jetted mold to further increase the reuse of UV light.The enhanced light emission of the QDs is 5%, 32%, and 23% for blue, green, and red QDs, respectively. 展开更多
关键词 QDs Optical cross-talk reduction in a quantumdot-based full-color micro-light-emitting-diode display by a lithographic-fabricated photoresist mold
原文传递
Flat-Panel Laser Displays Based on Liquid Crystal Microlaser Arrays 被引量:5
5
作者 Fa Feng Xu Yong Jun Li +5 位作者 Yuanchao Lv Haiyun Dong Xianqing Lin Kang Wang Jiannian Yao Yong Sheng Zhao 《CCS Chemistry》 CAS 2020年第6期369-375,共7页
Laser displays,benefiting from the characteristic merits of lasers,have led to the revolution of next-generation display technologies owing to their superior color expression.However,the acquisition of pixelated laser... Laser displays,benefiting from the characteristic merits of lasers,have led to the revolution of next-generation display technologies owing to their superior color expression.However,the acquisition of pixelated laser arrays as self-emissive panels for flat-panel laser displays remains challenging.Liquid crystal(LC)materials with excellent processability and optoelectronic properties offer considerable potential for the construction of highly ordered multicolor laser arrays.Here,we demonstrate flat-panel laser displays on LC microlaser pixel arrays through a microtemplate-assisted inkjet printing method.Individual organic red-green-blue(RGB)microlaser pixel arrays were obtained by doping dyes into LCs with photonic band edges to obtain single-mode RGB lasing,leading to a much broader color gamut,compared with the standard RGB color space.Then we acquired periodically patterned RGB pixel matrices by positioning LC microlasers precisely into highly ordered arrays,according to the well-organized geometry of the microtemplates.Subsequently,we demonstrated full-color flat-panel laser displays using the LC microlaser pixel matrices as self-emissive panels.These results provide valuable enlightenment for the construction of next-generation flat-panel laser display devices. 展开更多
关键词 laser display liquid crystal laser laser array full-color laser single-mode laser wide color gamut
原文传递
Quantum-dot and organic hybrid light-emitting diodes employing a blue common layer for simple fabrication of full-color displays
6
作者 Suhyeon Lee Donghyo Hahm +3 位作者 Suk-Young Yoon Heesun Yang Wan Ki Bae Jeonghun Kwak 《Nano Research》 SCIE EI CSCD 2022年第7期6477-6482,共6页
Colloidal quantum-dot(QD)light-emitting diodes(QLEDs)have been in the forefront of future display devices due to their outstanding optoelectronic properties.However,a complicated solution-process for patterning the re... Colloidal quantum-dot(QD)light-emitting diodes(QLEDs)have been in the forefront of future display devices due to their outstanding optoelectronic properties.However,a complicated solution-process for patterning the red,green,and blue QDs deteriorates the QLED performance and limits the resolution of full-color displays.Herein,we report a novel concept of QD–organic hybrid light-emitting diodes by introducing an organic blue common layer(BCL)which is deposited through a common mask over the entire sub-pixels.Benefitted from the optimized device structure,red and green QLEDs retained their color coordinates despite the presence of the BCL.Furthermore,adopting the BCL improved the external quantum efficiency of green and red QLEDs by 38.4%and 11.7%,respectively,due to the Förster resonance energy transfer from the BCL to the adjacent QD layers.With the BCL structure,we could simply demonstrate a full-color QD-organic hybrid device in a single substrate.We believe that this device architecture is practically applicable for easier fabrication of solution-processed,highresolution,and full-color displays with reduced process steps. 展开更多
关键词 quantum-dot light-emitting diode(QLEDs) organic light-emitting diode blue common layer full-color display reduced process step
原文传递
Full-color monolithic hybrid quantum dot nanoring micro light-emitting diodes with improved efficiency using atomic layer deposition and nonradiative resonant energy transfer 被引量:26
7
作者 SUNG-WEN HUANG CHEN CHIH-CHIANG SHEN +11 位作者 TINGZHU WU ZHEN-YOU LIAO LEE-FENG CHEN JIA-ROU ZHOU CHUN-FU LEE CHIH-HAO LIN CHIEN-CHUNG LIN CHIN-WEI SHER PO-TSUNG LEE AN-JYE TZOU ZHONG CHEN HAO-CHUNG KUO 《Photonics Research》 SCIE EI CSCD 2019年第4期416-422,共7页
Full-color displays based on micro light-emitting diodes(μLEDs) can be fabricated on monolithic epitaxial wafers. Nanoring(NR) structures were fabricated on a green LED epitaxial wafer; the color of NR-μLEDs was tun... Full-color displays based on micro light-emitting diodes(μLEDs) can be fabricated on monolithic epitaxial wafers. Nanoring(NR) structures were fabricated on a green LED epitaxial wafer; the color of NR-μLEDs was tuned from green to blue through strain relaxation. An Al_2O_3 layer was deposited on the sidewall of NR-μLEDs,which improved the photoluminescence intensity by 143.7%. Coupling with the exposed multiple quantum wells through nonradiative resonant energy transfer, red quantum dots were printed to NR-μLEDs for a full-color display. To further improve the color purity of the red light, a distributed Bragg reflector is developed to reuse the excitation light. 展开更多
关键词 full-color displays EPITAXIAL WAFERS
原文传递
显示技术的最新进展——SID 2005
8
《微电脑世界》 2005年第7期40-41,共2页
5月22日-27日,SID 2005(the Society of Information Display,2005年显示信息学会)在波士顿举行。与有机EL、FED并称为下一代三大显示技术的SED技术,在本次会议上最受瞩目。三星电子则展出了自称“全球最大”的102英寸PDP.82英寸液晶面... 5月22日-27日,SID 2005(the Society of Information Display,2005年显示信息学会)在波士顿举行。与有机EL、FED并称为下一代三大显示技术的SED技术,在本次会议上最受瞩目。三星电子则展出了自称“全球最大”的102英寸PDP.82英寸液晶面板以及40英寸有机EL面板,使得原本在显示技术中步步为营的日本厂商相形见拙,让人感慨良多。 展开更多
关键词 显示技术 SID Information display 有机el面板 2005年 显示信息 三星电子 40英寸 液晶面板 波士顿 SED FED POP
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部