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首页> 外文期刊>Angewandte Chemie >Acridan-Grafted Poly(biphenyl germanium) with High Triplet Energy, Low Polarizability, and an External Heavy-Atom Effect for Highly Efficient Sky-Blue TADF Electroluminescence
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Acridan-Grafted Poly(biphenyl germanium) with High Triplet Energy, Low Polarizability, and an External Heavy-Atom Effect for Highly Efficient Sky-Blue TADF Electroluminescence

机译:亚吖啶覆盖的聚(双苯基锗)具有高三重能量,低极化性,以及高效天蓝色TADF电致发光的外部重型作用

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摘要

We propose the novel sigma-pi conjugated polymer poly(biphenyl germanium) grafted with two electron-donating acridan moieties on the Ge atom for use as the host material in a polymer light-emitting diode (PLED) with the sky-blue-emitting thermally activated delayed fluorescence (TADF) material DMAC-TRZ as the guest. Its high triplet energy (E-T) of 2.86 eV is significantly higher than those of conventional pi-pi conjugated polymers (E-T=2.65 eV as the limit) and this guest emitter (E-T=2.77 eV). The TADF emitter emits bluer emission than in other host materials owing to the low orientation polarizability of the germanium-based polymer host. The Ge atom also provides an external heavy-atom effect, which increases the rate of reverse intersystem crossing in this TADF guest, so that more triplet excitons are harvested for light emission. The sky-blue TADF electroluminescence with this host/guest pair gave a record-high external quantum efficiency of 24.1 % at maximum and 22.8 % at 500 cd m(-2).
机译:我们提出了一种新的Sigma-PI缀合的聚合物聚(共苯基锗),其在GE原子上嫁接了两种电子给施氮部分,用作聚合物发光二极管(PLED)中的宿主材料,其中天蓝色发光激活延迟荧光(TADF)材料DMAC-TRZ作为客人。它的高三态能量(E-T)为2.86eV显着高于传统的PI-PI缀合聚合物(E-T = 2.65 EV作为极限)和此访客发射器(E-T = 2.77eV)。由于锗的聚合物宿主的低取向极化性,TADF发射器在其他主体材料中发射了布鲁尔发射。 GE Atom还提供了外部重型原子效应,这增加了该TADF客人中的反向交叉系统越过的速率,从而为发光收获了更多的三态激子。具有该主机/客人对的天蓝色TADF电致发光使得历史高的外部量子效率为24.1%,最高为24.1%,500℃(-2)下22.8%。

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