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Enabling high-mobility, ambipolar charge-transport in a DPP-benzotriazole copolymer by side-chain engineering.
Gruber, Mathias; Jung, Seok-Heon; Schott, Sam; Venkateshvaran, Deepak; Kronemeijer, Auke Jisk; Andreasen, Jens Wenzel; McNeill, Christopher R; Wong, Wallace W H; Shahid, Munazza; Heeney, Martin; Lee, Jin-Kyun; Sirringhaus, Henning.
Afiliação
  • Gruber M; Cavendish Laboratory , University of Cambridge , J J Thomson Avenue , Cambridge , CB3 0HE , UK . Email: hs220@cam.ac.uk.
  • Jung SH; Department of Polymer Science & Engineering , Inha University , Incheon , 402-751 , South Korea . Email: jkl36@inha.ac.kr.
  • Schott S; Cavendish Laboratory , University of Cambridge , J J Thomson Avenue , Cambridge , CB3 0HE , UK . Email: hs220@cam.ac.uk.
  • Venkateshvaran D; Cavendish Laboratory , University of Cambridge , J J Thomson Avenue , Cambridge , CB3 0HE , UK . Email: hs220@cam.ac.uk.
  • Kronemeijer AJ; Cavendish Laboratory , University of Cambridge , J J Thomson Avenue , Cambridge , CB3 0HE , UK . Email: hs220@cam.ac.uk.
  • Andreasen JW; Department of Energy Conversion and Storage , Technical University of Denmark , Frederiksborgvej 399 , 4000 Roskilde , Denmark.
  • McNeill CR; Department of Materials Engineering , Monash University , Clayton , Victoria 3800 , Australia.
  • Wong WWH; School of Chemistry , Bio21 Institute , University of Melbourne , Parkville , Victoria 3010 , Australia.
  • Shahid M; Department of Chemistry and Centre for Plastic Electronics , Imperial College , London , SW7 2AZ , UK . Email: m.heeney@imperial.ac.uk.
  • Heeney M; Department of Chemistry and Centre for Plastic Electronics , Imperial College , London , SW7 2AZ , UK . Email: m.heeney@imperial.ac.uk.
  • Lee JK; Department of Polymer Science & Engineering , Inha University , Incheon , 402-751 , South Korea . Email: jkl36@inha.ac.kr.
  • Sirringhaus H; Cavendish Laboratory , University of Cambridge , J J Thomson Avenue , Cambridge , CB3 0HE , UK . Email: hs220@cam.ac.uk.
Chem Sci ; 6(12): 6949-6960, 2015 Dec 01.
Article em En | MEDLINE | ID: mdl-29861933
In this article we discuss the synthesis of four new low band-gap co-polymers based on the diketopyrrolopyrrole (DPP) and benzotriazole (BTZ) monomer unit. We demonstrate that the BTZ unit allows for additional solubilizing side-chains on the co-monomer and show that the introduction of a linear side-chain on the DPP-unit leads to an increase in thin-film order and charge-carrier mobility if a sufficiently solubilizing, branched, side chain is attached to the BTZ. We compare two different synthetic routes, direct arylation and Suzuki-polycondensation, by a direct comparison of polymers obtained via the two routes and show that direct arylation produces polymers with lower electrical performance which we attribute to a higher density of chain Furthermore we demonstrate that a polymer utilizing this design motif and synthesized via Suzuki-polycondensation ((l-C18)-DPP-(b-C17)-BTZ) exhibits exceptionally high and near balanced average electron and hole mobilities >2 cm2 V-1 s-1 which are among the highest, robustly extracted mobility values reported for DPP copolymers in a top-gate configuration to date. Our results demonstrate clearly that linear side chain substitution of the DPP unit together with co-monomers that allow for the use of sufficiently long or branched solubilizing side chains can be an attractive design motif for solution processable, high mobility DPP copolymers.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Chem Sci Ano de publicação: 2015 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Chem Sci Ano de publicação: 2015 Tipo de documento: Article