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Pure blue and white light electroluminescence in a multilayer organic light-emitting diode using a new blue emitter 被引量:1
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作者 魏娜 郭坤平 +3 位作者 周朋超 于建宁 魏斌 张建华 《Chinese Physics B》 SCIE EI CAS CSCD 2014年第7期727-731,共5页
We characterized the 6,12-bis{[N-(3,4-dimethylphenyl)-N-(2,4,5-trimethylphenyl)]amino} chrysene (BmPAC), which has been proven to be a blue fluorescent emission with high EL efficiency. The blue fluorescent devi... We characterized the 6,12-bis{[N-(3,4-dimethylphenyl)-N-(2,4,5-trimethylphenyl)]amino} chrysene (BmPAC), which has been proven to be a blue fluorescent emission with high EL efficiency. The blue fluorescent device exhibits good performance with an external quantum efficiency of 5.8% and current efficiency of 8.9 cd/A, respectively. Using BmPAC, we also demonstrate a hybrid phosphorescence/fluorescence white organic light-emitting device (WOLED) with high efficiency of 36.3 cd/A. In order to improve the relative intensity of blue light, we plus a blue light-emitting layer (BEML) in front of the orange light emitting layer (YEML) to take advantage of the excess singlet excitons. With the new emitting layer of BEML/YEML/BEML, we demonstrate the fluorescence/phosphorescence/fluorescence WOLED exhibits good performance with a current efficiency of 47 cd/A and an enhanced relative intensity of blue light. 展开更多
关键词 BmPAC high efficiency blue organic light emitting diodes white organic light-emitting diodes
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High color rendering index white organic light-emitting diode using levofloxacin as blue emitter 被引量:1
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作者 苗艳勤 高志翔 +5 位作者 张爱琴 李源浩 王华 贾虎生 刘旭光 Tsuboi Taiju 《Chinese Physics B》 SCIE EI CAS CSCD 2015年第5期577-582,共6页
Levofloxacin (LOFX), which is well-known as an antibiotic medicament, was shown to be useful as a 452-nm blue emitter for white organic light-emitting diodes (OLEDs). In this paper, the fabricated white OLED conta... Levofloxacin (LOFX), which is well-known as an antibiotic medicament, was shown to be useful as a 452-nm blue emitter for white organic light-emitting diodes (OLEDs). In this paper, the fabricated white OLED contains a 452-nm blue emitting layer (thickness of 30 nm) with 1 wt% LOFX doped in CBP (4,4'-bis(carbazol-9-yl)biphenyl) host and a 584-nm orange emitting layer (thickness of 10 nm) with 0.8 wt% DCJTB (4-(dicyanomethylene)-2-tert-butyl-6-(1,1,7,7- tetramethyljulolidin-4-yl-vinyl)-4H-pyran) doped in CBE which are separated by a 20-nm-thick buffer layer of TPBi (2,2',2"-(benzene-1,3,5-triyl)-tri(1-phenyl-lH-benzimidazole). A high color rendering index (CRI) of 84.5 and CIE chromaticity coordinates of (0.33, 0.32), which is close to ideal white emission CIE (0.333, 0.333), are obtained at a bias voltage of 14 V. Taking into account that LOFX is less expensive and the synthesis and purification technologies of LOFX are mature, these results indicate that blue fluorescence emitting LOFX is useful for applications to white OLEDs although the maximum current efficiency and luminance are not high. The present paper is expected to become a milestone to using medical drug materials for OLEDs. 展开更多
关键词 LEVOFLOXACIN blue organic light emitting diodes white organic light-emitting diodes high color rendering index
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Fine-tuning the thicknesses of organic layers to realize high-efficiency and long-lifetime blue organic light-emitting diodes 被引量:1
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作者 于建宁 张民艳 +4 位作者 李崇 尚玉柱 吕燕芳 魏斌 黄维 《Chinese Physics B》 SCIE EI CAS CSCD 2012年第8期186-190,共5页
By using p-bis(p - N, N-diphenyl-aminostyryl)benzene doped 2-tert-butyl-9, 10-bis-β-naphthyl)-anthracene as an emitting layer, we fabricate a high-efficiency and long-lifetime blue organic light emitting diode wit... By using p-bis(p - N, N-diphenyl-aminostyryl)benzene doped 2-tert-butyl-9, 10-bis-β-naphthyl)-anthracene as an emitting layer, we fabricate a high-efficiency and long-lifetime blue organic light emitting diode with a maximum external quantum efficiency of 6.19% and a stable lifetime at a high initial current density of 0.0375 A/cm2. We demonstrate that the change in the thicknesses of organic layers affects the operating voltage and luminous efficiency greater than the lifetime. The lifetime being independent of thickness is beneficial in achieving high-quality full-colour display devices and white lighting sources with multi-emitters. 展开更多
关键词 organic light-emitting diode blue emission LIFETIME organic layers thickness
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Efficiency of Blue Organic Light-emitting Diodes Enhanced by Employing an Exciton Feedback Layer
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作者 于倩倩 张旭 +5 位作者 毕敬萱 刘冠廷 张棋雯 吴晓明 华玉林 印寿根 《Chinese Physics Letters》 SCIE CAS CSCD 2016年第8期146-150,共5页
We report that a novel exciton feedback effect is observed by introducing the bis(2-methyl-8-quinolinolato)(4- phenylphenolato)Muminum (BAlq) inserted between the emitting layer (EML) and the electron transpor... We report that a novel exciton feedback effect is observed by introducing the bis(2-methyl-8-quinolinolato)(4- phenylphenolato)Muminum (BAlq) inserted between the emitting layer (EML) and the electron transporting layer in blue organic light emitting diodes. As an exciton feedback layer (EFL), the BAlq does not act as a traditional hole blocking effect. The design of this kind of device structure can greatly reduce excitons' quenching due to accumulated space charge at the exciton formation interface. Meanwhile, the non-radiative energy transfer from EFL to the EML can also be utilized to enhance the excitons' formation, which is confirmed by the test of photolumimescent transient lifetime decay and electroluminescence enhancement of these devices. Accordingly, the optimal device presents the improved performances with the maximum current efficiency of 4.2 cd/A and the luminance of 24600cd/m2, which are about 1.45 times and 1.75 times higher than those of device A (control device) without the EFL, respectively. Simultaneously, the device shows an excellent color stability with a tiny offset of the CIE coordinates (△x = ±0.003, △y = ±0.004) and a relatively lower efficiency roll-off of 26.2% under the driving voltage varying from 3 V to 10 V. 展开更多
关键词 of in with is as Efficiency of blue organic light-emitting diodes Enhanced by Employing an Exciton Feedback Layer EFL OLEDs EML NPB by
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纳米结构氧化镍缓冲层对蓝色有机发光二极管性能的影响(英文)
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作者 孙永哲 郑礴 +10 位作者 李海蓉 王芳 员朝鑫 曹中涛 常芳芝 钱坤 雷琦 雷栋 薛鑫 韩根亮 宋玉哲 《发光学报》 EI CAS CSCD 北大核心 2017年第4期492-498,共7页
在阳极和空穴传输层分别引入氧化镍纳米结构缓冲层,制备了蓝色有机发光二极管,对二极管的电学和光学特性进行了测试分析,研究了采用电化学方法制备的氧化镍纳米结构对器件的影响。结果表明,纳米结构氧化镍缓冲层能够有效地提高空穴-电... 在阳极和空穴传输层分别引入氧化镍纳米结构缓冲层,制备了蓝色有机发光二极管,对二极管的电学和光学特性进行了测试分析,研究了采用电化学方法制备的氧化镍纳米结构对器件的影响。结果表明,纳米结构氧化镍缓冲层能够有效地提高空穴-电子对的产生和复合效率,它的引入带来了高效的空穴注入及发光层中的载流子平衡,能有效提高有机发光二极管的电致发光特性。氧化镍缓冲层沉积时间为30 s的器件具有最高的亮度和电流效率,分别为42 460 cd/m^2和24 cd/A,该器件的CIEx,y色坐标为(0.212 9,0.325 2)。 展开更多
关键词 蓝色有机发光二极管 阳极缓冲层 氧化镍纳米结构 电化学法
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