State Key Laboratory Breeding Base of Green Chemistry-Synthesis Technology, College of Chemical Engineering , Zhejiang University of Technology , Hangzhou , Zhejiang 310014 , P. R. China.
Material Science and Engineering , Arizona State University , Tempe , Arizona 85281 , United States.
ACS Appl Mater Interfaces. 2019 Oct 30;11(43):40320-40331. doi: 10.1021/acsami.9b13245. Epub 2019 Oct 17.
A novel host material of "M"-type carbazole/fluorene-based mDCzPF with a high triplet energy by utilizing meta-substituted phenyl groups as linkers was developed. It was demonstrated that the position of the substituents significantly affected the molecular configuration and dipole moment, which played a critical role in the device performances. Red phosphorescent OLED utilizing the "M"-type mDCzPF as the host represented a 10-fold operational lifetime improvement over the OLED using a "V"-type pDCzPF linked by para-substituted phenyl groups as the host because of the good charge transport ability of the mDCzPF. Additionally, the "M"-type mDCzPF host was also compatible with a blue emitting phosphorescent emitter PtNON. The PtNON-doped OLED using mDCzPF as the host exhibited a peak EQE of 18.3% with a small roll off, yet maintained an EQE of 13.3% at a high brightness of 5000 cd/m. Thus, the novel "M"-type mDCzPF could be employed as stable host material for efficient OLED emitting across the whole visible spectrum. This study should provide a viable method for designing new host materials for the development of stable and efficient phosphorescent OLEDs.
一种新型的“M”型咔唑/芴基 mDCzPF 主体材料,利用间位取代的苯基作为连接基团,具有较高的三重态能量。研究表明,取代基的位置对分子构型和偶极矩有显著影响,这对器件性能起着关键作用。利用“M”型 mDCzPF 作为主体材料的红色磷光 OLED 的工作寿命比以对位取代的苯基作为连接基团的“V”型 pDCzPF 作为主体材料的磷光 OLED 提高了 10 倍,这是因为 mDCzPF 具有良好的电荷传输能力。此外,“M”型 mDCzPF 主体材料也与蓝色发射磷光掺杂剂 PtNON 兼容。以 mDCzPF 为主体材料的 PtNON 掺杂 OLED 表现出 18.3%的峰值 EQE 和较小的滚降,然而在 5000 cd/m 的高亮度下仍保持 13.3%的 EQE。因此,新型“M”型 mDCzPF 可作为高效 OLED 发射整个可见光谱的稳定主体材料。本研究为设计新型稳定高效磷光 OLED 的主体材料提供了一种可行的方法。