Synthesis, Photophysical, and Electroluminescent Device Properties of Zn(II)-Chelated Complexes Based on Functionalized Benzothiazole Derivatives

被引:75
作者
Roh, Soo-Gyun [1 ,2 ]
Kim, Yong-Hee [1 ,2 ]
Seo, Kang Deuk [1 ,2 ]
Lee, Dong Hyun [1 ,2 ]
Kim, Hwan Kyu [1 ,2 ]
Park, Young-Il [3 ]
Park, Jong-Wook [3 ]
Lee, Ji-Hoon [4 ]
机构
[1] Korea Univ, Dept Adv Mat Chem, Chungnam 339700, South Korea
[2] Korea Univ, Ctr Adv Photovolta Mat, Chungnam 339700, South Korea
[3] Catholic Univ Korea, Dept Chem, Display Res Ctr, Puchon 420734, South Korea
[4] Chungju Natl Univ, Dept Polymer Sci & Engn, Chungju 308702, South Korea
基金
新加坡国家研究基金会;
关键词
INTRAMOLECULAR PROTON-TRANSFER; LIGHT-EMITTING-DIODES; EXCITED-STATE; TRANSFER ESIPT; FLUORESCENCE; MECHANISM; PHOTOLUMINESCENT; PHOSPHORESCENCE; TRANSPORT; EMISSION;
D O I
10.1002/adfm.200801122
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
New Zn(II)-chelated complexes based on benzothiazole derivatives, including substituted functional groups such as methyl (MeZn), methoxy (MeOZn), or fluorenyl unit (FuZn), are investigated to produce white-light emission. 2-(2-Hydroxyphenyl)benzothiazole derivatives in toluene and DMSO exhibit excited-state intramolecular proton transfer (ESIPT), leading to a large Stokes shift of the fluorescence emission. However, in methanol they exhibit no ESIPT due to the intermolecular hydrogen bonding between the 2-(2-hydroxyphenyl)benzothiazole derivative and methanol. Their Zn(II)-chelated complexes exhibit the absorption band red-shifted at 500 nm in nonpolar solvent and the absorption band blue-shifted at about 420 nm in protic solvent. In multilayer electroluminescent devices, methyl-substituted Zn(II)-chelated complex (MeZn) exhibits excellent power efficiency and fluorene-substituted Zn(II)-chelated complex (FuZn) has a high luminance efficiency (1 cd m(-2) at 3.5 V, 10 400 cd m(-2) at 14V). The EL spectra of Zn(II)-chelated complexes based on benzothiazole derivatives exhibit broad emission bands. in addition, their electron-transport property for red-green-blue (RGB) organic light-emitting diodes (OLEDs) is systematically studied, in comparison with that of Alq(3). The results demonstrate the promising potential of MeZn as an electron-transporting layer (ETL) material in preference to Alq(3), which is widely used as an ETL material.
引用
收藏
页码:1663 / 1671
页数:9
相关论文
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