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The Effect of Ring Expansion in Thienobenzo[b]indacenodithiophene Polymers for Organic Field-Effect Transistors.
Chen, Hu; Wadsworth, Andrew; Ma, Chun; Nanni, Alice; Zhang, Weimin; Nikolka, Mark; Luci, Alexander M T; Perdigão, Luís M A; Thorley, Karl J; Cendra, Camila; Larson, Bryon; Rumbles, Garry; Anthopoulos, Thomas D; Salleo, Alberto; Costantini, Giovanni; Sirringhaus, Henning; McCulloch, Iain.
Afiliação
  • Chen H; King Abdullah University of Science and Technology (KAUST) , KAUST Solar Center (KSC) , Thuwal 23955-6900 , Saudi Arabia.
  • Wadsworth A; Department of Chemistry and Centre for Plastic Electronics , Imperial College London , Exhibition Road , London SW7 2AZ , United Kingdom.
  • Ma C; King Abdullah University of Science and Technology (KAUST) , KAUST Solar Center (KSC) , Thuwal 23955-6900 , Saudi Arabia.
  • Nanni A; King Abdullah University of Science and Technology (KAUST) , KAUST Solar Center (KSC) , Thuwal 23955-6900 , Saudi Arabia.
  • Zhang W; King Abdullah University of Science and Technology (KAUST) , KAUST Solar Center (KSC) , Thuwal 23955-6900 , Saudi Arabia.
  • Nikolka M; Optoelectronics Group, Cavendish Laboratory , University of Cambridge , JJ Thomson Avenue , Cambridge CB3 0HE , U.K.
  • Luci AMT; Department of Chemistry , University of Warwick , Gibbet Hill Road , Coventry CV4 7AL , U.K.
  • Perdigão LMA; Department of Chemistry , University of Warwick , Gibbet Hill Road , Coventry CV4 7AL , U.K.
  • Thorley KJ; Department of Chemistry and Centre for Plastic Electronics , Imperial College London , Exhibition Road , London SW7 2AZ , United Kingdom.
  • Cendra C; Department of Materials Science and Engineering , Stanford University , 476 Lomita Mall , Stanford , California 94305 , United States.
  • Larson B; National Renewable Energy Laboratory , Golden , Colorado 80401 , United States.
  • Rumbles G; National Renewable Energy Laboratory , Golden , Colorado 80401 , United States.
  • Anthopoulos TD; King Abdullah University of Science and Technology (KAUST) , KAUST Solar Center (KSC) , Thuwal 23955-6900 , Saudi Arabia.
  • Salleo A; Department of Materials Science and Engineering , Stanford University , 476 Lomita Mall , Stanford , California 94305 , United States.
  • Costantini G; Department of Chemistry , University of Warwick , Gibbet Hill Road , Coventry CV4 7AL , U.K.
  • Sirringhaus H; Optoelectronics Group, Cavendish Laboratory , University of Cambridge , JJ Thomson Avenue , Cambridge CB3 0HE , U.K.
  • McCulloch I; King Abdullah University of Science and Technology (KAUST) , KAUST Solar Center (KSC) , Thuwal 23955-6900 , Saudi Arabia.
J Am Chem Soc ; 141(47): 18806-18813, 2019 Nov 27.
Article em En | MEDLINE | ID: mdl-31613619
ABSTRACT
A fused donor, thienobenzo[b]indacenodithiophene (TBIDT), was designed and synthesized using a novel acid-promoted cascade ring closure strategy, and then copolymerized with a benzothiadiazole (BT) monomer. The backbone of TBIDT is an expansion of the well-known indacenodithiophene (IDT) unit and was expected to enhance the charge carrier mobility by improving backbone planarity and facilitating short contacts between polymer chains. However, the optimized field-effect transistors demonstrated an average saturation hole mobility of 0.9 cm2 V-1 s-1, lower than the performance of IDT-BT (∼1.5 cm2 V-1 s-1). Mobilities extracted from time-resolved microwave conductivity measurements were consistent with the trend in hole mobilities in organic field-effect transistor devices. Scanning tunneling microscopy measurements and computational modeling illustrated that TBIDT-BT exhibits a less ordered microstructure in comparison to IDT-BT. This reveals that a regular side-chain packing density, independent of conformational isomers, is critical to avoid local free volume due to irregular packing, which can host trapping impurities. DFT calculations indicated that TBIDT-BT, despite containing a larger, planar unit, showed less stabilization of planar backbone geometries in comparison to IDT-BT. This is due to the reduced electrostatic stabilizing interactions between the peripheral thiophene of the fused core and the BT unit, resulting in a reduction of the barrier to rotation around the single bond. These insights provide a greater understanding of the general structure-property relationships required for semiconducting polymer repeat units to ensure optimal backbone planarization, as illustrated with IDT-type units, guiding the design of novel semiconducting polymers with extended fused backbones for high-performance field-effect transistors.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: J Am Chem Soc Ano de publicação: 2019 Tipo de documento: Article País de afiliação: Arábia Saudita

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: J Am Chem Soc Ano de publicação: 2019 Tipo de documento: Article País de afiliação: Arábia Saudita