共查询到20条相似文献,搜索用时 15 毫秒
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合成了一种含苯并噻唑结构配体的环金属化铱配合物(ffbi)2Ir(acac),(其中ffbi为1-(4-氟苄基)-2-(4-氟苯基)苯并咪唑,acac为乙酰丙酮),并以其作为发光体, 制备了有机电致发光器件。结果表明该配合物具有强磷光发光特性,器件发绿色光。其中结构为TCTA(40 nm)/CBP∶Ir(6.3%,30 nm)/BCP(10 nm)/Alq(40 nm)的电致发光器件在12 V电压下最大发光亮度达41 499 cd·m-2,在8 V电压下,最大外量子效率达5.7%。 相似文献
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Hongji Jiang 《Macromolecular rapid communications》2010,31(23):2007-2034
The field of organic electronics has been developed vastly in the past two decades, and the performance and lifetime of these devices are critically dependent on the materials development, device design, deposition processes, and modeling, among which the active materials of organic semiconductor play a crucial role. The unique properties of organic semiconductor are largely based on the versatility to synthesize multifunctional organic conjugated materials by judicious molecular design. To effectively adjust the optoelectronic properties, especially energy levels, of organic semiconductor, the scientists have presented a synthesis methodology of organic ambipolar conjugated molecules, in which typical p‐dope type and n‐dope type segments are incorporated into one molecule. The present review summarizes the progress on organic ambipolar conjugated molecules for electronics in the past few years. Some issues to be addressed are also highlighted and discussed.
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有机半导体光电器件在基础研究和工业应用方面进展迅速, 相关方向已经成为一个较为成熟的新兴领域. 然而, 这类器件中的关键有机材料存在对空气中的水、氧十分敏感的问题, 严重影响了器件的长期工作性能. 除了选择合适的传输层材料、界面层结构, 利用界面工程提高器件水氧耐受能力之外, 对器件进行可靠的封装是隔绝空气中水、氧的另一个有效手段. 原子层沉积(atomic layer deposition, ALD)是一种近乎完美的薄膜沉积封装技术, 这种技术所生长的薄膜具有独特的层-层(layer by layer)生长特性, 而且可以在低温下沉积出厚度可控、重复率高、均匀致密的薄膜, 使得该技术在半导体行业已经得到广泛应用. 在此, 我们将回顾ALD封装技术在有机发光二极管(organic light emitting diode, OLED)、有机太阳能电池(organic photovoltaics, OPV)和钙钛矿太阳能电池(perovskite solar cell, PSC)中的应用, 并进一步讨论现阶段应用于OLED的相对比较成熟的ALD封装技术, 及其对OPV和PSC封装的启示性意义. 相似文献
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电子传输材料在OLED (Organic Light Emitting Diode) 中起着极为重要的作用,电子迁移率高的传输材料可以使器件的电子与空穴注入大致平衡,从而增加激子形成的概率,减少器件中由于空穴数量过剩而导致空穴通过器件内部传输到阴极而形成的漏电流,提高器件发光亮度和效率。本文概述了有机金属配合物电子传输材料的进展,以金属中心离子来划分有机金属配合物电子传输材料的种类,分别介绍了主族的Al、Be等,副族的Cu、Zn等以及稀土金属为中心离子的电子传输材料;并展望了金属配合物电子传输材料的发展前景。 相似文献
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Hui Zeng Qingyu Huang Jingjing Liu Yan Huang Jie Zhou Suling Zhao Zhiyun Lu 《中国化学》2016,34(4):387-396
A novel sextuple hydrogen‐bonding (HB) self‐assembly molecular duplex bearing red‐emitting perylene diimide (PDI) fluorophores, namely PDIHB , was synthesized, and its molecular structure was confirmed by 1H NMR, 13C NMR, TOF‐MS and 2D NMR. Compared with the small molecular reference compound PDI , PDIHB shows one time enhanced fluorescence efficiency in solid state (4.1% vs. 2.1%). More importantly, the presence of bulky HB oligoamide strands in PDIHB could trigger effective spatial separation between guest and host fluorophores in thin solid film state, hence inefficient energy transfer occurs between the blue‐emitting host 2TPhNIHB and red guest PDIHB in the 2 wt% guest/host blending film. As a result, a solution‐processed organic light‐emitting diode (OLED) with quite simple device structure of ITO/PEDOT:PSS (40 nm)/PVK (40 nm)/ PDIHB (2 wt%): 2TPhNIHB (50 nm)/LiF (0.8 nm)/Al (100 nm) could emit bias‐independent warm‐white electroluminescence with stable Commission Internationale de L'Eclairage coordinates of (0.42, 0.33), and the maximum brightness and current efficiency of this device are 260 cd·m?2 and 0.49 cd·A?1, respectively. All these results indicated that HB self‐assembly supramolecular fluorophores could act as prospective materials for white OLED application. 相似文献
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Shahnawaz Iram Siddiqui Mangey Ram Nagar Abhijeet Choudhury Jin-Tin Lin Dovydas Blazevicius Gintare Krucaite Saulius Grigalevicius Jwo-Huei Jou 《Molecules (Basel, Switzerland)》2021,26(24)
Low color temperature candlelight organic light-emitting diodes (LEDs) are human and environmentally friendly because of the absence of blue emission that might suppress at night the secretion of melatonin and damage retina upon long exposure. Herein, we demonstrated a lighting device incorporating a phenoxazine-based host material, 3,3-bis(phenoxazin-10-ylmethyl)oxetane (BPMO), with the use of orange-red and yellow phosphorescent dyes to mimic candlelight. The resultant BPMO-based simple structured candlelight organic LED device permitted a maximum exposure limit of 57,700 s, much longer than did a candle (2750 s) or an incandescent bulb (1100 s) at 100 lx. The resulting device showed a color temperature of 1690 K, which is significantly much lower than that of oil lamps (1800 K), candles (1900 K), or incandescent bulbs (2500 K). The device showed a melatonin suppression sensitivity of 1.33%, upon exposure for 1.5 h at night, which is 66% and 88% less than the candle and incandescent bulb, respectively. Its maximum power efficacy is 23.1 lm/W, current efficacy 22.4 cd/A, and external quantum efficiency 10.2%, all much higher than the CBP-based devices. These results encourage a scalable synthesis of novel host materials to design and manufacture high-efficiency candlelight organic LEDs. 相似文献
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本文设计合成了一种新型电子受体2,2-二甲基-1,3-茚二酮,并将其应用于热激活延迟荧光(TADF)分子的设计中,合成了一系列具有不同发光性能的TADF分子:5-二甲基吖啶基-2,2-二甲基-1,3-茚二酮(IDYD),5-吩噁嗪基-2,2-二甲基-1,3-茚二酮(IDPXZ)和5,6-二吩噁嗪基-2,2-二甲基-1,3-茚二酮(ID2PXZ)。以IDYD为客体掺杂制备得到蓝光OLED器件,其CIE值为(0.27,0.31),最大外量子效率(EQE)为2.13%。以IDPXZ为客体掺杂得到橙光OLED器件,其CIE值为(0.43,0.53),EQE为1.31%。以ID2PXZ为客体掺杂得到黄光OLED器件,其CIE值为(0.41,0.54),EQE为2.55%。上述结果证明了以2,2-二甲基-1,3-茚二酮为电子受体可以得到不同发光颜色的TADF分子,并在全色OLED器件中具有一定应用前景。 相似文献
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Philipp Zacharias Dr. Malte C. Gather Dr. Anne Köhnen Dr. Nina Rehmann Klaus Meerholz Prof. Dr. 《Angewandte Chemie (International ed. in English)》2009,48(22):4038-4041
Enlightening the memory : The integration of a crosslinkable photochromic dithienylperfluorocyclopentene (DTE) into organic light‐emitting diodes (OLED) allows for the individualization of the emissive area of the OLED device, for example, for signage applications. The operation principle is based on switching the injection barrier for holes (positive charge carriers). Very large ON/OFF ratios of up to 3000 for current as well as electroluminescence have been achieved.
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研究了基于互补色的高效聚合物白光器件,双色材料包括蓝绿光材料双(4,6-二氟苯基吡啶-N,C2)吡啶甲酰合铱(Firpic)和黄光材料三[3-(2,6-二甲基苯氧基)-6-(2-噻吩基)-哒嗪]铱(Fs-1),器件结构为ITO/PEDOT(40 nm)/PVK:OXD-7:Firpic:Fs-1(80 nm)/Ba(4 nm)/Al(120 nm).当发光层材料PVK∶OXD-7∶Firpic∶Fs-1质量比为63∶27∶10∶0.25时,用溶液加工方法得到高效白光器件,此时CIE色坐标为(0.30,0.39),最大电流效率为10.8 cd.A-1,亮度可达到4200 cd.m-2.在此基础上,引入水溶性电子注入材料聚[9,9-二(3′-N,N-二甲基胺基丙基-2,7-芴-2,7-交-(9,9-二辛基芴)](PFN)修饰阴极界面,使载流子注入和传输更平衡,当阴极为PFN(20 nm)/Al(120 nm)时,电流效率获得显著改善,达到13.1 cd.A-1,此时电流密度为4.9 mA.cm-2,亮度可达到6096 cd.m-2,白光器件的色坐标为(0.33,0.39),同时发光光谱稳定.另外通过电致发光(EL)、光致发光(PL)光谱及能级结构图分析了载流子俘获和能量转移在发光中的作用. 相似文献
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《Chemical record (New York, N.Y.)》2018,18(3):293-349
Today organic light emitting diodes are a topic of significant academic and industrial research interest. OLED technology is used in commercially available displays, and efforts have been directed to improve this technology. Design and synthesis of phosphorescent based transition metals are capable of harvesting both singlet and triplet excitons and achieve 100 % internal quantum efficiency is an active area of research. Among all the transition metals, iridium is considered a prime candidate for OLEDs due to its prominent photophysical characteristics. In the present review, we have concentrated on the Iridium based homo and heteroleptic complexes that have dissimilar substitutions on phenylpyridine ligands, different ancillary ligands and the effect of substitution on HOMO/LUMO energies and a brief discussion and correlation on the photophysical, electrochemical and device performances of the different complexes have been reviewed for organic light emitting diodes. 相似文献
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不同电子传输层的蓝光有机电致发光器件的性能研究 总被引:6,自引:0,他引:6
自从Tang等^[1]首次报道多层有机电致发光器件(OLED)以来,其在亮度和效率上有了质的飞跃,表明器件的结构对提高发光亮度和发光效率起着至关重要的作用,单层器件虽然具有制作简单的优点,但却存在明显缺点:(1)复合发光区靠近金属电极,该处缺陷很多,非辐射复合几率大,导致器件效率降低;(2)由于两种载流子注入不平衡,载流子的复合几率较低,因而影响器件的发光效率,要使发光层中具有高的载流子辐射复合效率,两种载流子的注入及传输能力应相当,否则传输快的一方就会直接穿过发光层到达对电极被猝灭,平衡电子和空穴的注入与传输可通过在电极和发光层之间加入载流子输运层或限制层制作多层器件的途径来实现,基于上述考虑,我们以PPCP为发光层(PPCP是一种荧光效率较高的蓝光材料^[2-4],对其进行深入研究尚未见有文献报道_,设计了4种不同电子传输层(ETL)的三层 结构的OLED,为研究电子传输层对器件性能的影响,我们还制备了不含电子传输层的双层器件,结果表明,通过选择合适的ETL,OLED的发光亮度及发光效率会有很大程度的改善。 相似文献
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Using an Organic Molecule with Low Triplet Energy as a Host in a Highly Efficient Blue Electrophosphorescent Device 下载免费PDF全文
Cong Fan Liping Zhu Tengxiao Liu Bei Jiang Prof. Dongge Ma Prof. Jingui Qin Prof. Chuluo Yang 《Angewandte Chemie (International ed. in English)》2014,53(8):2147-2151
To achieve high efficiencies in blue phosphorescent organic light‐emitting diodes (PhOLEDs), the triplet energies (T1) of host materials are generally supposed to be higher than the blue phosphors. A small organic molecule with low singlet energy (S1) of 2.80 eV and triplet energy of 2.71 eV can be used as the host material for the blue phosphor, [bis(4,6‐difluorophenylpyridinato‐N,C2′)iridium(III)] tetrakis(1‐pyrazolyl)borate (FIr6; T1=2.73 eV). In both the photo‐ and electro‐excited processes, the energy transfer from the host material to FIr6 was found to be efficient. In a three organic‐layer device, the maximum current efficiency of 37 cd A?1 and power efficiency of 40 Lm W?1 were achieved for the FIr6‐based blue PhOLEDs. 相似文献
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Lin Ke Shuang Fang Lim Soo Jin Chua 《Journal of Polymer Science.Polymer Physics》2001,39(14):1697-1703
Dark spot growth rate tracing experiments performed on an organic light‐emitting device show that moisture entering into the device is relatively properly fitted by Fick's diffusion equation in the substrate/indium tin oxide (ITO)/hole transport layer (HTL)/silver (Ag) structure. It is believed that the moisture is dissolved into the polymer layer, which results in a decrease in the diffusion coefficient in the device with the substrate/ITO/HTL/electroluminescent (EL) polymer/Ag structure. The diffusion and chemical reaction occurring in the cathode layer further decreases the diffusion coefficient in the device with the substrate/ITO/HTL/EL polymer/calcium/Ag structure. Useful parameters, such as diffusion and solubility constants, describing possible mechanisms happening during dark spot growth on organic light‐emitting diode devices are extracted. © 2001 John Wiley & Sons, Inc. J Polym Sci Part B: Polym Phys 39: 1697–1703, 2001 相似文献
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Highly Efficient Near‐Infrared Delayed Fluorescence Organic Light Emitting Diodes Using a Phenanthrene‐Based Charge‐Transfer Compound 下载免费PDF全文
Shipan Wang Xianju Yan Zong Cheng Prof. Dr. Hongyu Zhang Prof. Dr. Yu Liu Prof. Dr. Yue Wang 《Angewandte Chemie (International ed. in English)》2015,54(44):13068-13072
Significant efforts have been made to develop high‐efficiency organic light‐emitting diodes (OLEDs) employing thermally activated delayed fluorescence (TADF) emitters with blue, green, yellow, and orange–red colors. However, efficient TADF materials with colors ranging from red, to deep‐red, to near‐infrared (NIR) have been rarely reported owing to the difficulty in molecular design. Herein, we report the first NIR TADF molecule TPA‐DCPP (TPA=triphenylamine; DCPP=2,3‐dicyanopyrazino phenanthrene) which has a small singlet–triplet splitting (ΔEST) of 0.13 eV. Its nondoped OLED device exhibits a maximum external quantum efficiency (EQE) of 2.1 % with a Commission International de L′Éclairage (CIE) coordinate of (0.70, 0.29). Moreover, an extremely high EQE of nearly 10 % with an emission band at λ=668 nm has been achieved in the doped device, which is comparable to the most‐efficient deep‐red/NIR phosphorescent OLEDs with similar electroluminescent spectra. 相似文献