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高效双层界面激基复合物用于制备黄色有机电致发光二极管。

Highly efficient bilayer interface exciplex for yellow organic light-emitting diode.

机构信息

Institute of Optoelectronic Sciences, National Taiwan Ocean University, Keelung 20224, Taiwan.

出版信息

ACS Appl Mater Interfaces. 2013 Aug 14;5(15):6826-31. doi: 10.1021/am402032z. Epub 2013 Jul 16.

Abstract

A simple three-layer interfacial-type yellow emission exciplex device with an external quantum efficiency as high as 7.7% has been successfully achieved by combining conformation compatible C3-symmetric hole-transporting TCTA and electron-transporting 3P-T2T. The excellent and balanced charge-transporting properties of TCTA and 3P-T2T and the large energy-levels offset (0.8 eV) of TCTA/3P-T2T interface play important roles for the efficient exciplexes formation, which are effectively confined around the interfacial region due to the high triplet energies (2.85 eV) of TCTA and 3P-T2T. The high-performance OLED was believed to be from the effective harvest of exciplex triplet excitons via reverse intersystem crossing process.

摘要

通过将构象相容的 C3 对称空穴传输 TCTA 和电子传输 3P-T2T 相结合,成功地实现了一个简单的三层界面型黄色发射激基复合物器件,其外量子效率高达 7.7%。TCTA 和 3P-T2T 的优异和平衡的电荷传输性能以及 TCTA/3P-T2T 界面的大能级偏移(0.8 eV)对于高效激基复合物的形成起着重要作用,由于 TCTA 和 3P-T2T 的高三重态能量(2.85 eV),激基复合物有效地被限制在界面区域周围。高性能 OLED 被认为是通过反向系间窜越过程有效地利用激基复合物三重态激子。

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