材料科学
兴奋剂
掺杂剂
聚合物
共轭体系
导电聚合物
有机电子学
纳米技术
生物电子学
电导率
化学物理
光电子学
物理化学
晶体管
电气工程
物理
复合材料
电压
生物传感器
化学
工程类
作者
Zhifan Ke,Jagrity Chaudhary,Lucas Q. Flagg,Kyle N. Baustert,Augustine O. Yusuf,Guangchao Liu,Liyan You,Kenneth R. Graham,Dean M. DeLongchamp,Jianguo Mei
标识
DOI:10.1002/adfm.202400255
摘要
Abstract The doping levels of conjugated polymers significantly influence their conductivity, energetics, and optical properties. Recently, a highly conductive n‐doped polymer called poly (3,7‐dihydrobenzo[1,2‐b:4,5‐b′]difuran‐2,6‐dione) (poly(benzodifurandione), n‐PBDF) is discovered, opening new possibilities for n‐type conducting polymers in printed electronics and other fields. Controlling the doping level of n‐PBDF is of great interest due to its wide range of potential applications. Here controlled dedoping and redoping of n‐PBDF is reported and a mechanistic understating of such a process is provided. Dedoping occurs through electron transfer and proton capture, wherein the ionic dopants, tris(4‐bromophenyl)ammoniumyl hexachloroantimonate (Magic Blue), exhibit efficient proton capture ability and stronger interaction with n‐PBDF, resulting in high dedoping efficiency. Moreover, chemically dedoped PBDF can be redoped using various proton‐coupled electron transfer agents. By manipulating the doping levels of n‐PBDF thin films, ranging from highly doped to dedoped states, the system demonstrates controllable conductivity in five orders of magnitude, adjustable optical properties, and energetics. As a result, these characteristics demonstrate the potential applications of n‐PBDF in organic electrochemical transistors and thermoelectrics.
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