4.5 Article

Synthesis of regular D-A1-D-A2 copolymers via direct arylation polycondensation and application in solar cells

Journal

SYNTHETIC METALS
Volume 209, Issue -, Pages 412-418

Publisher

ELSEVIER SCIENCE SA
DOI: 10.1016/j.synthmet.2015.08.019

Keywords

Direct arylation polycondensation; Diketopyrrolopyrrole; Polymer solar cells; Regular D-A(1)-D-A(2) copolymers

Funding

  1. National Natural Science Foundation of China [21574021, 51573026]
  2. Natural Science Foundation of Fujian Province [2015J01189]
  3. Program for Innovative Research Team in Science and Technology in Fujian Province (IRTSTFJ)

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Two regular D-A(1)-D-A(2) copolymers were synthesized via direct arylation polycondensation. In these copolymers, diketopyrrolopyrrole and benzothiadiazole were used as the acceptor units, while oligothiophene was used as the donor unit. Dodecyl group were also introduced into the thiophene moiety to explore the side chain effect on the properties of these copolymers. The optimum direct arylation reaction conditions were explored in order to obtain high molecular weight regular D-A(1)-D-A(2) copolymer. It is found that the dodecyl group on thiophene moiety can improve the coplanarity and conjugation along the main chain of D-A(1)-D-A(2) copolymer. These copolymers exhibit a broad absorption, narrow band gap and high pacldng order. Such properties are helpful for improving the photovoltaic properties. The relationship between the molecular weight and the photovoltaic property in copolymer P1 was also revealed. As the result, a higher power conversion efficiency of 3.65% was achieved for the copolymer P1 with a molecular weight of 86.1 kDa. (C) 2015 Elsevier B.V. All rights reserved.

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