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合成了四氮杂大环化合物,Tetraazamacrocycliccompound,6,12,19,25 tetramethyl 7,11:20,24 dinitrilo dibenzo[b,m][1,4,12,15]tetra azacyclo docosine(TMCD).TMCD作为电子传送材料,探讨了它在有机电致发光器件中的应用.制作了结构为:玻璃基板/ITO阳极/NPD/Alq/TMCD/LiF/Al阴极的器件.评价的结果显示:该有机电致发光器件在538nm的绿色发光来源于Alq层.它的最大外部量子效率为0.84%,视感效率为1.30lm/W.最先提出了四氮杂大环化合物做为电子传送材料,可应用于电致发光领域. 相似文献
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有机电致发光器件具有直流电压驱动、主动发光、体积小、无视角限制、响应快,以及色彩全、制作工艺简单等优点,作为新型显示技术而倍受瞩目.在构建有机电致发光器件的三大材料中 (空穴传输材料、电子传输材料和发光材料),空穴传输材料的玻璃化温度(Tg)以及红色发光材料的色纯度和发光效率亟待改进.本论文通过对分子进行合适的裁剪与修饰,设计合成了具有良好应用前景的空穴传输材料和红色发光材料,研究了化合物的物化性质与分子结构的关系以及它们在器件上的应用. 相似文献
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有机电致发光器件因驱动电压低、亮度和效率高等优点,已经成为最具潜力的平板显示技术。自以8-羟基喹啉铝为发光材料制备双层有机电致发光器件开始,科研人员在发光材料设计合成方面做了大量工作并取得了重大研究进展。在小分子荧光材料中,8-羟基喹啉及其衍生物为配体的有机金属配合物因合成方法简单、发光效率和亮度高、成膜性好等优点而被广泛应用。本文简述了有机电致发光器件的优点、结构及工作原理,重点介绍了基于8-羟基喹啉及其衍生物为配体的有机小分子电致发光材料的研究现状。从分子设计的角度出发,旨在总结8-羟基喹啉及其衍生物为配体的有机小分子电致发光材料对有机电致发光器件性能的影响,包括:以8-羟基喹啉为单一配体的有机金属配合物展示了良好的电子传输能力、亮度高且可作为基质材料等卓越的特性;通过对8-羟基喹啉的苯氧环或吡啶环进行修饰可以调节电致发光颜色;混合配体的使用可以增加玻璃化温度、改善薄膜形貌进而提高器件的效率和稳定性。最后,对该领域存在的问题和有机电致发光材料的应用前景作了评述。 相似文献
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合成了含有萘环的(口恶)二唑铍配合物并对其进行了表征. 在紫外光的激发下配合物能够发出很强的蓝色荧光. 采用NPB为空穴传输层、配合物为发光层制备了双层器件, 得到了蓝色的电致发光, 证明该配合物是一种良好的电致发光材料. 相似文献
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含萘噁二唑铍配合物的合成及光致发光和电致发光性能研究 总被引:3,自引:0,他引:3
合成了含有萘环的二唑铍配合物并对其进行了表征.在紫外光的激发下配合物能够发出很强的蓝色荧光.采用NPB为空穴传输层、配合物为发光层制备了双层器件,得到了蓝色的电致发光,证明该配合物是一种良好的电致发光材料. 相似文献
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高色纯度的红色掺杂型电致发光材料的合成及其性能研究 总被引:1,自引:0,他引:1
以吡喃腈作为电子受体、吲哚啉作为电子给体单元, 合成了一种吲哚啉衍生物DADIN作为高色纯度的红色掺杂型电致发光材料, 并对其溶液特性和有机电致发光器件性能进行了研究. 相对于柯达公司经典掺杂型红色发光材料DCJTB, 该发光材料的合成简单、提纯工艺易行、产率高, 并具有更纯正的红色发光. 研究表明, 以DADIN作为掺杂型电致发光材料的有机电致发光器件的电流效率是DCJTB的1.5倍, 实为DCJTB理想的替代品. 相似文献
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稀土有机电致发光研究进展 总被引:20,自引:4,他引:16
介绍了近年来有机电致发光研究中稀土有机电致发光研究的动态,对稀土有机配合物的选择、配合物的载流子传输性能、稀土有机电致发光器件、电致发光与光致发光的关系以及如何提高电致发光器件亮度等问题进行了讨论。 相似文献
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采用ITO/PVK/Alq/Al双层电致发光(EL)结构,制备了三种载流子输运层厚度分别为30、 60、 120 nm,发光层厚度均为300 nm的有机薄膜EL器件,测试其EL谱及J-V特性曲线.根据有机EL器件中载流子的产生和输运过程导出了载流子复合几率及电子和空穴密度分布表示式,用以解释其发光强度随输运层厚度的变化关系,用一维无序结构载流子随机跃迁模型讨论输运层厚度对器件电流密度及启动电压的影响,探讨了载流子在薄膜中的输运过程,其理论与实验符合得很好. 相似文献
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含氧、氮、硫杂原子的螺环大分子化合物的研究进展 总被引:1,自引:0,他引:1
近20年来, 螺环大分子化合物由于其特殊的结构而引起了科学家们的广泛关注, 作为一类新型的高负载量载体应用于有机合成和催化是螺环大分子化合物重要的应用领域之一. 介绍了含氧、氮、硫等杂原子的线形及树形大分子螺环化合物的合成方法和结构特征, 展望了该类化合物的应用前景, 并提出了一些新的设想. 相似文献
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Eugene I. Mal'tsev Maria A. Brusentseva Dmitry A. Lypenko Vladimir I. Berendyaev Vladislav A. Kolesnikov Boris V. Kotov Anatoly V. Vannikov 《先进技术聚合物》2000,11(7):325-329
Optical and electroluminescent properties of a new soluble anthracene‐containing polyimide (ACPI) was studied. Solubility of ACPI in organic solvents allows direct spin casting of the polymer films exhibiting intense photo‐ and electroluminescence (EL) in the visible range. This non‐conjugated polymer was used as emitting and electron‐hole transporting layers in polymer light‐emitting devices (LEDs). EL properties of the uni‐ and bilayer LEDs are discussed in terms of the band structure, bipolar transport and electron donor‐acceptor interactions. Copyright © 2000 John Wiley & Sons, Ltd. 相似文献
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1,1,4,4-Tetraphenyl-1,3-butadiene (TPB) was successfully introduced into the polymer multilayerfilms by means of Langmuir-Blodgett (LB) technique. Results of UV-VIS spectra and X-ray diffractionshowed that the uniform films had a layer structure similar to the superlattice of organic multiple quantumwells. The electroluminescence (EL) devices fabricated from the doped polymer LB films emitted blue light.Compared with the casting films, the photoluminescence (PL) and EL spectra showed that the exciton energyshifts to higher and the half-width of the emission peak becomes narrower due to exciton confinement effect. 相似文献
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Air‐Stable Spirofluorene‐Containing Ladder‐Type Bis(alkynyl)borane Compounds with Readily Tunable Full Color Emission Properties
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Ben Yiu‐Wing Wong Dr. Hok‐Lai Wong Yi‐Chun Wong Dr. Mei‐Yee Chan Prof. Dr. Vivian Wing‐Wah Yam 《Chemistry (Weinheim an der Bergstrasse, Germany)》2016,22(42):15095-15106
A series of air‐stable spiro‐fused ladder‐type boron(III) compounds has been designed, synthesized, and the electrochemistry and photophysical behavior have been characterized. By simply varying the substituents on the pyridine ring and extending the π‐conjugation of the spiro framework, the emission color of these compounds can be easily fine‐tuned spanning the visible spectrum from blue to red. All compounds exhibit a broad and structureless emission band across the entire visible region, assigned as an intramolecular charge‐transfer transition originating from the thiophene of the spiro framework to the pyridine‐borane moieties. In addition, these compounds demonstrate high photoluminescence quantum yields of up to 0.81 in dichloromethane solution and 0.86 in doped thin films. Some of the compounds have also been employed as emissive materials, in which solution‐processed organic light‐emitting devices (OLEDs) with tunable emission colors spanning the visible spectrum from blue, green to red have been realized, demonstrating the potential applications of these boron compounds in OLEDs. 相似文献
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The photoluminescence(PL) and the electroluminescence(EL) properties of a novel organic compound, 2,5-bis(2,2′-bis(5-phenyl)-1,3,4-oxadiazole(T-OXD), were studied in chloroform and in a solid thin film. The PL and the EL properties of T-OXD/poly(9-vinylcarbazole)(PVK) blends were also studied, which contained various contents of T-OXD. The PL maximum emission peaks of T-OXD/PVK blends show gradual bathochromtic-shift with the increase of the T-OXD content. The EL spectra of T-OXD/PVK devices are similar to their PL spectra, and all the EL maximum emission peaks show bathochromtic-shift compared with the corresponding PL spectra, which is ascribed to the formation of electroplex. The turn-on voltages for ITO/T-OXD:PVK/Al devices decreased from 13.5 V of the device cotaining 0.1% T-OXD(mass fraction) to 5 V of the device containing 5% T-OXD, which suggests that T-OXD improves the energy level match between T-OXD and PVK and enhances the emission efficiency. The experimental results indicate that T-OXD can be used as a good electron transporting material. 相似文献