One of the advantages of organic light-emitting diode(OLED) over other display technologies is the ability to fabricate on flexible substrates.
有機(jī)電致發(fā)光二極管與其他顯示器件相比,最大的優(yōu)勢就是可以制備在聚合物基板上,實現(xiàn)柔性顯示,但聚合物對水、氧的阻擋能力遠(yuǎn)不如玻璃。
White organic light-emitting diodes (WOLEDs) have made great progress over the last twelve years to demonstrate that these devices are now being considered as efficient solid-state lighting sources.
白色有機(jī)電致發(fā)光二極管(whiteorganiclight-emittingdiodes,WOLED)在過去12年間獲得了巨大的發(fā)展,有望成為下一代高效固態(tài)光源。
Organic light-emiting devices (OLED) are extremely sensitive to vapor and oxygen.
有機(jī)電致發(fā)光二極管(OLED)對水汽和氧氣非常敏感,滲入發(fā)光二極管(OLED)器件內(nèi)部的水汽和氧氣會對器件壽命產(chǎn)生嚴(yán)重的影響,因此 OLED 的封裝是制造 OLED 的關(guān)鍵技術(shù)之一。
Improved Performance of Eu Complex OLEDs with Microcavity Structure;
微腔結(jié)構(gòu)對銪配合物有機(jī)電致發(fā)光二極管(OLEDs)性能的提高
Organic light-emitting diodes(OLEDs)have attracted intensive interest due to its potential application in the large-scale,full-color plat displays.
本論文對于一系列具有強(qiáng)熒光化合物的設(shè)計、合成、表征以及在有機(jī)電致發(fā)光二極管中的應(yīng)用進(jìn)行了描述,同時也對化合物的熒光構(gòu)效關(guān)系進(jìn)行了研究和討論。
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