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首页> 外文期刊>Current applied physics: the official journal of the Korean Physical Society >Effect of different spacers for performance enhancement on white organic light-emitting devices based on double emissive layers with homogeneous p--type host
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Effect of different spacers for performance enhancement on white organic light-emitting devices based on double emissive layers with homogeneous p--type host

机译:不同间隔物对具有均匀p / n型主体双发光层的白色有机发光器件的性能提高的影响

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摘要

White organic light-emitting devices (WOLEDs) based on phosphorescent blue and yellow emitters were fabricated, while p-type di-(4-(N,N-ditolyl-amino)- phenyl)cyclohexane (TAPC) and n-type 2,2′,2″-(1,3,5-benzenetriyl)- tris(1-phenyl-1-H-benzimidazole) (TPBi) were separately utilized as a homogeneous host for both blue and yellow emissive layers (EMLs). Then, various spacers were inserted between the two EMLs for performance characterization. The results showed that for the TAPC-host devices, a device using 4,7-diphenyl-1,10-phenanthroline (Bphen) as the spacer had a maximum current efficiency (CE) of 11.3 cd/A, while stable white light emission with Commission Internationale del'Eclairage (CIE) coordinates of (0.394, 0.435) at a bias of 5 V was observed. Similarly, among the TPBi-host devices, a device using 4,4′-bis(carbazol-9-yl)biphenyl (CBP) as the spacer exhibited a maximum CE of 18.1 cd/A, accompanied by negligible color variation with the CIE coordinates of (0.284,0.333) at 5 V. For the double-EML devices, the improved device efficiency and color stability by introducing proper spacer was attributed to broadened recombination region and efficient energy transfer between the EMLs.
机译:制作了基于磷光蓝色和黄色发光体的白色有机发光器件(WOLED),而制造了p型二-(4-(N,N-二糖基-氨基)-苯基)环己烷(TAPC)和n型2, 2′,2″-(1,3,5-苯三基)-三(1-苯基-1-H-苯并咪唑)(TPBi)分别用作蓝色和黄色发光层(EML)的均质主体。然后,将各种隔离物插入两个EML之间以进行性能表征。结果表明,对于TAPC主机设备,使用4,7-二苯基-1,10-菲咯啉(Bphen)作为间隔物的设备的最大电流效率(CE)为11.3 cd / A,同时稳定的白光发射在5V偏压下观察到国际照明委员会(CIE)的坐标为(0.394,0.435)。同样,在TPBi主机设备中,使用4,4'-双(咔唑-9-基)联苯(CBP)作为间隔基的设备的最大CE为18.1 cd / A,而CIE的颜色变化可忽略不计在5 V时,其坐标为(0.284,0.333)。对于双EML器件,通过引入适当的间隔基而提高的器件效率和颜色稳定性归因于重组区域的扩大和EML之间的有效能量转移。

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