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Double Beneficial Role of Fluorinated Fullerene Dopants on Organic Thin-Film Transistors: Structural Stability and Improved Performance: Structural Stability and Improved Performance

  • Adara Babuji
  • , Ines Temino
  • , Ana Perez-Rodriguez
  • , Olga Solomeshch
  • , Nir Tessler
  • , Maria Vila
  • , Jinghai Li
  • , Marta Mas-Torrent
  • , Carmen Ocal
  • , Esther Barrena

Research output: Contribution to journalArticlepeer-review

Abstract

The present work assesses improved carrier injection in organic field-effect transistors by contact doping and provides fundamental insight into the multiple impacts that the dopant/semiconductor interface details have on the long-term and thermal stability of devices. We investigate donor [1]benzothieno[3,2-b]-[1]benzothiophene (BTBT) derivatives with one and two octyl side chains attached to the core, therefore constituting asymmetric (BTBT-C8) and symmetric (C8-BTBT-C8) molecules, respectively. Our results reveal that films formed out of the asymmetric BTBT-C8 expose the same alkyl-terminated surface as the C8-BTBT-C8 films do. In both cases, the consequence of depositing fluorinated fullerene (C60F48) as a molecular p-dopant is the formation of C60F48 crystalline islands decorating the step edges of the underlying semiconductor film surface. We demonstrate that local work function changes along with a peculiar nanomorphology lead to the double beneficial effect of lowering the contact resistance and providing long-term and enhanced thermal stability of the devices.

Original languageEnglish GB
Pages (from-to)28416-28425
Number of pages10
JournalACS applied materials & interfaces
Volume12
Issue number25
DOIs
StatePublished - 28 May 2020

Keywords

  • CF
  • KPFM
  • OFETs
  • contact doping
  • interfaces
  • organic semiconductors

ASJC Scopus subject areas

  • General Materials Science

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