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首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Design of star-shaped molecular architectures based on carbazole and phosphine oxide moieties: towards amorphous bipolar hosts with high triplet energy for efficient blue electrophosphorescent devices
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Design of star-shaped molecular architectures based on carbazole and phosphine oxide moieties: towards amorphous bipolar hosts with high triplet energy for efficient blue electrophosphorescent devices

机译:基于咔唑和氧化膦部分的星形分子体系结构设计:针对具有高三重态能量的无定形双极主体,用于高效的蓝色电致磷光器件

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摘要

With a carbazole moiety as the electron donor and a phosphine-oxide moiety as the electron acceptor, two novel star-shaped bipolar hosts, 4,4',4"-tri(N-carbazolyl)triphenylphosphine oxide (TCTP) and 3,6-bis(diphenylphosphoryl)-9-(4'-(diphenylphosphoryl)phenyl)carbazole (TPCz), have been designed and synthesized. Their topology structure differences are that the phosphine-oxide moiety is located in the molecular centre and the periphery for TCTP and TPCz, respectively. The star-shaped architecture imparts them with high decomposition temperatures (T_d: 497 ° C for TCTP and 506 ° C for TPCz) and results in the formation of a stable amorphous glassy state (T_g: 163 °C for TCTP and 143 °C for TPCz), while the phosphine oxide linkage ensures the disrupted conjugation and the high triplet energy (>3.0 eV). In addition, both TCTP and TPCz possess a bipolar transporting capability. However, TCTP mostly transports holes and TPCz primarily conducts electrons. On the basis of appropriate device configurations, high performance blue electrophosphorescent devices with comparable efficiency (35.0-36.4 cd A~(-1),15.9-16.7%) have been realized using TCTP and TPCz as the host for the blue phosphor, respectively. Compared with the unipolar host, 4,4',4"-tri(N-carbazolyl)triphenylamine(TCT A, 15.9 cd A~(-1),7.8%), the efficiency is improved by more than two-fold. As far as the obtained state-of-the-art performance is concerned, we think that these novel materials should provide an avenue for the design of amorphous bipolar hosts with high triplet energy used for blue PhOLEDs on a star-shaped scaffold.
机译:以咔唑部分作为电子供体,膦氧化物部分作为电子受体,两个新颖的星形双极主体,4,4',4“-三(N-咔唑基)三苯基膦氧化物(TCTP)和3,6设计合成了-双(二苯基磷酰基)-9-(4'-(二苯基磷酰基)苯基)咔唑(TPCz),其拓扑结构差异在于膦氧化物部分位于TCTP的分子中心和外围星形结构使它们具有较高的分解温度(TTP:TCTP为497°C,TPCz为506°C),并形成稳定的非晶态玻璃态(TCTP:T_g:163°C) TPCz的温度为143°C),而氧化膦键确保了共轭的破坏和高三重态能量(> 3.0 eV)。此外,TCTP和TPCz都具有双极传输能力,但是TCTP主要传输空穴和TPCz传导电子。在适当的设备c的基础上分别使用TCTP和TPCz作为蓝色荧光粉的主体,已经实现了具有可比效率(35.0-36.4 cd A〜(-1),15.9-16.7%)的高性能蓝色电致磷光器件。与单极性主体4,4',4“-三(N-咔唑基)三苯胺(TCT A,15.9 cd A〜(-1),7.8%)相比,效率提高了两倍以上。就获得的最新性能而言,我们认为这些新颖的材料应为设计用于星形支架上的蓝色PhOLED的具有高三重态能量的无定形双极主体提供一条途径。

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