4.8 Article

Improving the Electronic Transporting Property for Flexible Field-Effect Transistors with Naphthalene Diimide-Based Conjugated Polymer through Branching/Linear Side-Chain Engineering Strategy

Journal

ACS APPLIED MATERIALS & INTERFACES
Volume 11, Issue 17, Pages 15837-15844

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsami.9b00531

Keywords

n-type polymeric semiconductor; conjugated polymer; naphthalene diimide; side chain; flexible field-effect transistor

Funding

  1. Youth Innovation Promotion Association CAS [2015024]
  2. National Natural Science Foundation of China [21790360, 21661132006]
  3. Strategic Priority Research Program of the CAS [XDB12010300]
  4. National Key R&D Program of China [2017YFA0204701]

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n-Type organic/polymeric semiconductors with high electron mobilities are highly demanded for future flexible organic circuits. Except for developing a new conjugated backbone, recent studies show that side-chain engineering also plays an indispensable role in boosting the charge transporting property. In this paper, we report a new polymer PNDI2T-DTD with a representative n-type naphthalene diimide (NDI)-bithiophene backbone for high-performance n-type flexible thin-film transistors through branching/linear side-chain engineering strategy. Serving as the flexible side chains, the linear/branching side-chain pattern is found to be effective in tuning the preaggregation behavior in solution and the packing ordering of polymeric chains, resulting in the improvement of thin-film crystallinity. The electron mobility of the thin film of PNDI2T-DTD on flexible substrates can reach 1.52 cm(2) V-1 s(-1), which is approximately five times higher than that of PNDI2T-DT with the same conjugated backbone and only branching alkyl chains.

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