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首页> 外文期刊>Frontiers in Chemistry >Trap-Controlled White Electroluminescence From a Single Red-Emitting Thermally Activated Delayed Fluorescence Polymer
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Trap-Controlled White Electroluminescence From a Single Red-Emitting Thermally Activated Delayed Fluorescence Polymer

机译:从单个红色发射热激活延迟荧光聚合物的捕集控制的白色电致发光

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Single white-emitting polymers have been reported by incorporating the second-generation carbazole dendron into the side chain of a red-emitting thermally activated delayed fluorescence (TADF) polymer. Due to the prevented hole trap effect, in this case, excitons can be generated simultaneously on the polymeric host and the red TADF dopant to give a dual emission. Consequently, a bright white electroluminescence is achieved even at a dopant loading as high as 5 mol.%, revealing a maximum luminous efficiency of 16.1 cd/A (12.0 lm/W, 8.2%) and Commission Internationale de l’Eclairage (CIE) coordinates of (0.42, 0.32). The results clearly indicate that the delicate tuning of charge trap is a promising strategy to develop efficient single white-emitting polymers, whose low-band-gap chromophore content can be up to a centesimal level.
机译:通过将第二代咔唑树枝掺入红发热活化的延迟荧光(TADF)聚合物的侧链中,据报道了单一的白色发光聚合物。由于防止孔阱效果,在这种情况下,可以在聚合物宿主和红色TADF掺杂剂上同时产生激子以提供双发射。因此,即使在高达5mol的掺杂剂负载下,均匀达到亮的白色电致发光。%,揭示最大发光效率为16.1cd / a(12.0 lm / w,8.2%)和委员会Internationale de l'EclaReage(CIE) (0.42,0.32)的坐标。结果清楚地表明,电荷陷阱的微妙调整是开发有效的单一白色发光聚合物的有希望的策略,其低带间隙发色团含量可以高达百分比水平。

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