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Tuning charge carrier transport and optical birefringence in liquid-crystalline thin films: A new design space for organic light-emitting diodes.
Keum, Chang-Min; Liu, Shiyi; Al-Shadeedi, Akram; Kaphle, Vikash; Callens, Michiel Koen; Han, Lu; Neyts, Kristiaan; Zhao, Hongping; Gather, Malte C; Bunge, Scott D; Twieg, Robert J; Jakli, Antal; Lüssem, Björn.
Afiliação
  • Keum CM; Department of Physics, Kent State University, Kent, OH, 44242, USA. dlog2k@gmail.com.
  • Liu S; Organic Semiconductor Centre, SUPA, School of Physics and Astronomy, University of St Andrews, St Andrews, KY16 9SS, United Kingdom. dlog2k@gmail.com.
  • Al-Shadeedi A; Department of Physics, Kent State University, Kent, OH, 44242, USA.
  • Kaphle V; Department of Physics, Kent State University, Kent, OH, 44242, USA.
  • Callens MK; Department of physics, University of Baghdad, Al-Jadriya, Baghdad, 10071, Iraq.
  • Han L; Department of Physics, Kent State University, Kent, OH, 44242, USA.
  • Neyts K; Department of Electronics and Information Systems, Ghent University, Ghent, B-9000, Belgium.
  • Zhao H; Department of Electrical Engineering and Computer Science, Case Western Reserve University, Cleveland, OH, 44106, USA.
  • Gather MC; Department of Electronics and Information Systems, Ghent University, Ghent, B-9000, Belgium.
  • Bunge SD; Department of Electrical Engineering and Computer Science, Case Western Reserve University, Cleveland, OH, 44106, USA.
  • Twieg RJ; Organic Semiconductor Centre, SUPA, School of Physics and Astronomy, University of St Andrews, St Andrews, KY16 9SS, United Kingdom.
  • Jakli A; Department of Chemistry and Biochemistry, Kent State University, Kent, OH, 44242, USA.
  • Lüssem B; Department of Chemistry and Biochemistry, Kent State University, Kent, OH, 44242, USA.
Sci Rep ; 8(1): 699, 2018 01 15.
Article em En | MEDLINE | ID: mdl-29335503
ABSTRACT
Liquid-crystalline organic semiconductors exhibit unique properties that make them highly interesting for organic optoelectronic applications. Their optical and electrical anisotropies and the possibility to control the alignment of the liquid-crystalline semiconductor allow not only to optimize charge carrier transport, but to tune the optical property of organic thin-film devices as well. In this study, the molecular orientation in a liquid-crystalline semiconductor film is tuned by a novel blading process as well as by different annealing protocols. The altered alignment is verified by cross-polarized optical microscopy and spectroscopic ellipsometry. It is shown that a change in alignment of the liquid-crystalline semiconductor improves charge transport in single charge carrier devices profoundly. Comparing the current-voltage characteristics of single charge carrier devices with simulations shows an excellent agreement and from this an in-depth understanding of single charge carrier transport in two-terminal devices is obtained. Finally, p-i-n type organic light-emitting diodes (OLEDs) compatible with vacuum processing techniques used in state-of-the-art OLEDs are demonstrated employing liquid-crystalline host matrix in the emission layer.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2018 Tipo de documento: Article