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Bipolar and Unipolar Silylene-Diphenylene σ-π Conjugated Polymer Route for Highly Efficient Electrophosphorescence

机译:双极性和单极性甲硅烷基-二亚苯基σ-π共轭聚合物途径可实现高效电致磷光

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摘要

σ-π conjugated polymer strategy is proposed for designing electroluminescent host polymers with silylene-diphenylene as the backbone repeat unit giving a high triplet energy (ET = 2.67 eV). By incorporation of high ET (3.0 eV) electron (oxadiazole, OXD) and hole (triphenyl amine, TPA) transport moieties, or TPA alone (in this case, the main chain acts as electron transport channel) as side arms on the silylene, the high ET bipolar and unipolar polymers are formed, allowing a use of iridium green phosphor (Ir(ppy)2(acac), Ir-G) (ET = 2.40 eV) as the dopant. The matching of energy levels of the dopant with the hosts, leading to charge trapping into it; and singlets and triplets of the exciplex and excimer can be harvested via energy transfer to the dopant. Using these host-guest systems as the emitting layer, chlorinated indium-tin-oxide (Cl-ITO) as the anode, and benzimidazole derivative (TPBI) as the electron transport layer, this two-layer device gives the high luminance efficiency 80.1 cd/A and external quantum efficiency 21.2%, which is the best among the report values for polymer light emitting diode (PLED) in the literatures. This example manifests that σ-π conjugated polymer strategy is a promising route for designing polymer host for efficient electrophosphorescence.
机译:提出了采用σ-π共轭聚合物策略设计电致发光主体聚合物,该聚合物以甲硅烷基-二亚苯基为骨架重复单元,具有很高的三线态能量(ET = 2.67 eV)。通过结合高ET(3.0 eV)电子(恶二唑,OXD)和空穴(三苯胺,TPA)传输部分,或单独使用TPA(在这种情况下,主链充当电子传输通道)作为亚甲硅烷基的侧臂,形成高ET双极性和单极性聚合物,从而可以使用铱绿色荧光粉(Ir(ppy)2(acac),Ir-G)(ET(= 2.40 eV)作为掺杂剂。掺杂剂的能级与主体的匹配,导致电荷被捕获到其中;激基复合物和受激准分子的单线态和三重态可以通过将能量转移到掺杂剂来获得。使用这些主客体系统作为发光层,使用氯化铟锡氧化物(Cl-ITO)作为阳极,使用苯并咪唑衍生物(TPBI)作为电子传输层,此两层器件可提供80.1 cd的高发光效率/ A和外部量子效率21.2%,这是文献中聚合物发光二极管(PLED)的报告值中最好的。该实例表明,σ-π共轭聚合物策略是设计用于有效电致磷光的聚合物主体的有希望的途径。

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