4.7 Article

Naphthalenediimides Fused with 2-(1,3-DithioI-2-ylidene)acetonitrile: Strong Electron-Deficient Building Blocks for High-Performance n-Type Polymeric Semiconductors

Journal

ACS MACRO LETTERS
Volume 3, Issue 11, Pages 1174-1177

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/mz500603f

Keywords

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Funding

  1. Strategic Priority Research Program [XDB12010100]
  2. National Natural Science Foundation [51173200, 21302212]
  3. ministry of Science and Technology [2011CB932300]
  4. Chinese Academy of Sciences

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Naphthalenediimides (NDI) fused with two 2-(1,3-dithio1-2-ylidene)acetonierile moieties (NDI-DTYA2), a novel strong electron-deficient monomer, was designed and readily synthesized by aromatic nucleophilic substitution to develop n-type polymers. Two NDI-DTYA2 based donor-acceptor (D-A) polymers P(NDI-DTYA-1T) and P(NDI-DTYA2-2T) have been prepared (1T = thiophene, 2T = 2,2'-bithiophene) and showed low-lying LUMO energies (<-4.2 eV) and near-infrared optical absorptions (optical band gap <1.3 eV). Although the film feature of these polymers is amorphous, pure electron transport with high mobility of up to 0.38 cm(2) V-1 s(-1) could be achieved for their bottom gate organic thin film transistors, which was among the highest performances for unipolar n-type polymers. The results demonstrate that NDI-DTYA2 derivatives are promising building blocks for developing electron transport pi-functional materials.

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