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Efficient molecular doping of polymeric semiconductors improved by coupled reaction.

Jiahao Pan | Jing Wang | Kuncai Li | Xu Dai | Qing Li | Daotong Chong | Bin Chen | Junjie Yan | Hong Wang
Nature communications | 2024

Exploring chemical doping method to improve the electrical conductivity of polymers is still very attractive for researchers. In this work, we report a developed method of doping a polymer semiconductor aided by the coupled reaction that commonly exists in biological systems where a non-spontaneous reaction is driven by a spontaneous reaction. During the doping process, the chemical reaction between the dopant and the polymer is promoted by introducing a thermodynamically favorable reaction via adding additives that are highly reactive to the reduction product of the dopant to form a coupled reaction, thus significantly improving the electrical conductivity of polymers by 3-7 orders. This coupled reaction doping process shows the potential of wide applications in exploring efficient doping systems to prepare functional conducting polymers, which could be a powerful tool for modern organic electronics.

Pubmed ID: 38997309

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Associated grants

  • Agency: National Natural Science Foundation of China (National Science Foundation of China),
    Id: 52276014

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Gaussian (tool)

RRID:SCR_014897

Software program for electronic structure modeling that enables researchers to study and predict the properties of molecules and reactions under a wide range of conditions, especially those that are difficult or impossible to observe experimentally.

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