Chen Yen-Chun, Huang Guo-Sheng, Hsiao Chung-Chin, Chen Show-An
Chemical Engineering Department, National Tsing-Hua University, Hsinchu 30041, Taiwan, R.O.C.
J Am Chem Soc. 2006 Jul 5;128(26):8549-58. doi: 10.1021/ja060936t.
We report the conjugated polymer P(tBu-CBP) as a host with high triplet energy (E(T) 2.53 eV) and suitable HOMO (5.3 eV) and LUMO (2.04 eV) energy levels. Upon doping with green and red emission Ir-complexes, it gives devices with high luminous and external quantum efficiencies for green emission (23.7 cd/A, 6.57%) and for red emission (5.1 cd/A, 4.23%), respectively, and low turn-on voltage (3 V). For both devices, the efficiencies are higher than those of the corresponding devices with the same backbone P(3,6-Cz) as a host by a factor of 4, even though the latter has an E(T) (2.6 eV) slightly higher than that of the former. The results reflect that, in phosphorescent devices, the difference in E(T) between the host and guest is not the only factor that determines the device efficiency, and the present side group modification via the 9 position of carbazole also plays an important role, which allows a tuning of HOMO and LUMO levels to provide more balance in electron and hole fluxes and provides prevention from formation of excimer.
我们报道了共轭聚合物P(tBu-CBP)作为一种主体材料,其具有高三重态能量(E(T)为2.53 eV)以及合适的最高已占分子轨道(HOMO,5.3 eV)和最低未占分子轨道(LUMO,2.04 eV)能级。在用绿色和红色发光的铱配合物掺杂后,它分别给出了具有高发光效率和外量子效率的绿色发光器件(23.7 cd/A,6.57%)和红色发光器件(5.1 cd/A,4.23%),且开启电压低(3 V)。对于这两种器件,其效率比以相同主链P(3,6-Cz)作为主体的相应器件高出4倍,尽管后者的E(T)(2.6 eV)略高于前者。结果表明,在磷光器件中,主体和客体之间的E(T)差异不是决定器件效率的唯一因素,并且通过咔唑9位进行的当前侧基修饰也起着重要作用,这使得能够调节HOMO和LUMO能级,以在电子和空穴通量方面提供更多平衡,并防止激基复合物的形成。