Departments of †Chemistry and ‡Materials Science and Engineering, National Tsing Hua University , Hsinchu 30013, Taiwan.
J Am Chem Soc. 2017 Aug 16;139(32):10948-10951. doi: 10.1021/jacs.7b03848. Epub 2017 Aug 2.
Simultaneous enhancement of out-coupling efficiency, internal quantum efficiency, and color purity in thermally activated delayed fluorescence (TADF) emitters is highly desired for the practical application of these materials. We designed and synthesized two isomeric TADF emitters, 2DPyM-mDTC and 3DPyM-pDTC, based on di(pyridinyl)methanone (DPyM) cores as the new electron-accepting units and di(tert-butyl)carbazole (DTC) as the electron-donating units. 3DPyM-pDTC, which is structurally nearly planar with a very small ΔE, shows higher color purity, horizontal ratio, and quantum yield than 2DPyM-mDTC, which has a more flexible structure. An electroluminescence device based on 3DPyM-pDTC as the dopant emitter can reach an extremely high external quantum efficiency of 31.9% with a pure blue emission. This work also demonstrates a way to design materials with a high portion of horizontal molecular orientation to realize a highly efficient pure-blue device based on TADF emitters.
同时提高热激活延迟荧光(TADF)发射器的外耦合效率、内量子效率和颜色纯度对于这些材料的实际应用是非常需要的。我们设计并合成了两种同分异构的 TADF 发射器,2DPyM-mDTC 和 3DPyM-pDTC,它们以二(吡啶基)甲酮(DPyM)核作为新的电子接受单元,二(叔丁基)咔唑(DTC)作为电子供体单元。3DPyM-pDTC 结构几乎是平面的,ΔE 非常小,其颜色纯度、水平比和量子效率都高于 2DPyM-mDTC,后者具有更灵活的结构。以 3DPyM-pDTC 为掺杂发射器的电致发光器件可以达到 31.9%的极高外量子效率,并发出纯蓝色发射。这项工作还展示了一种设计具有高比例水平分子取向的材料的方法,以实现基于 TADF 发射器的高效纯蓝器件。