Alkali metal salts doped pluronic block polymers as electron injection/transport layers for high performance polymer light-emitting diodes |
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Authors: | Zhang Kai Liu ShengJian Guan Xing Duan ChunHui Zhang Jie Zhong ChengMei Wang Lei Huang Fei Cao Yong |
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Affiliation: | ZHANG Kai, LIU ShengJian, GUAN Xing, DUAN ChunHui, ZHANG Jie, ZHONG ChengMei, WANG Lei*, HUANG Fei* & CAO Yong State Key Laboratory of Luminescent Materials and Devices; Institute of Polymer Optoelectronic Materials and Devices, South China University of Technology, Guangzhou 510640, China |
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Abstract: | A series of alkali metal salts doped pluronic block copolymer F127 were used as electron injection/transport layers (ETLs) for polymer light-emitting diodes with poly[2-(4-(3′,7′-dimethyloctyloxy)-phenyl)-p-phenylenevinylene] (P-PPV) as the emission layer. It was found that the electron transport capability of F127 can be effectively enhanced by doping with alkali metal salts. By using Li2CO3 (15%) doped F127 as ETL, the resulting device exhibited improved performance with a maximum luminous efficiency (LE) of 13.59 cd/A and a maximum brightness of 5529 cd/m2, while the device with undoped F127 as ETL only showed a maximum LE of 8.78 cd/A and a maximum brightness of 2952 cd/m2. The effects of the doping concentration, cations and anions of the alkali metal salts on the performance of the resulting devices were investigated. It was found that most of the alkali metal salt dopants can dramatically enhance the electron transport capability of F127 ETL and the performance of the resulting devices was greatly improved. |
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Keywords: | polymer light emitting diodes water/alcohol soluble polymer doping alkali metal salts electron transport layer |
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