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Study on the disparate transition behaviors of the electrical/physical properties in PEDOT:PSS film depending on solvent species under a follow-up solution-treatment process

  • Dong Jin Yun
  • , Jung Hwa Kim
  • , Seong Heon Kim
  • , Minsu Seol
  • , Daeun Yu
  • , Hyukju Kwon
  • , Yongnam Ham
  • , Jaegwan Chung
  • , Yongsu Kim
  • , Sung Heo
  • Samsung

Research output: Contribution to journalJournal articlepeer-review

Abstract

In most solution-processed organic devices, a poly(3,4-ethylenedioxythiophene) (PEDOT) polymerized with poly(4-styrenesulfonate) (PSS) film is inevitably affected by various conditions during the subsequent solution-coating processes. To investigate the effects of direct solvent exposure on the properties of PEDOT polymerized with PSS (PEDOT:PSS) films, photoemission spectroscopy-based analytical methods were used before and after solvent-coating processes. Our results clearly indicate that PEDOT:PSS films undergo a different transition mechanism depending on the solubility of the solvent in water. The water-miscible solvents induce the solvation of hydrophilic PSS chains. As a result, this process allows the solvent to diffuse into the PEDOT:PSS film, and a conformational change between PEDOT and PSS occurs. On the other hand, the water-immiscible organic solvents cause the partial adsorption of solvent molecules at the PE surface, which leads to changes in the surface properties, including work function. Based on our finding, we demonstrate that the energy-level alignments at the organic semiconductor/electrode interface for the PEDOT:PSS films can be controlled by simple solvent treatments.

Original languageEnglish
Article number165706
JournalNanotechnology
Volume27
Issue number16
DOIs
StatePublished - 2016.03.10

Keywords

  • Ar gas cluster ion beam sputtering
  • Poly(3,4-ethylenedioxythiophene) polymerized with poly(4-styrenesulfonate)
  • electrical conductivity
  • organic solvent
  • photoemission spectroscopy
  • work function

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