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Figure 2 Application of PBFDO in organic electronic devices
With the support of the National Natural Science Foundation of China (approval number: U21A6002), Professor Huang Fei, Academician Cao Yong and Academician Ma Yuguang of the State Key Laboratory of Luminescent Materials and Devices of South China University of Technology, Professor Zhang Yuanzhu, Professor Guo Xugang of Southern University of Science and Technology and Professor Pei Jian of Peking University have collaborated to innovatively propose a new n-type conductive polymer synthesis strategy and realize the preparation
The research team combined oxidation polymerization and reduction doping, and used the reversible redox characteristics of quinone oxidants to easily prepare n-type conductive polymers with a conductivity of 2000 S cm-1, poly (benzobifuranedione) (PBFDO)
Based on the ultra-high conductivity and air stability of PBFDO, it shows potential in a variety of organic electronic device applications, such as the ultra-high transconductance of 1970 S cm-1 and excellent operating stability in organic chemical transistors; Preparation of n-type organic thermoelectric devices that operate stably in air, with a power factor close to 90 μW m?1 K?2; It can be used for printing and preparing flexible electrodes