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Phase Transitions and Formation of a Monolayer-Type Structure in Thin Oligothiophene Films: Exploration with a Combined In Situ X-ray Diffraction and Electrical Measurements.
Mikayelyan, Eduard; Grodd, Linda; Ksianzou, Viachaslau; Wesner, Daniel; Rodygin, Alexander I; Schönherr, Holger; Luponosov, Yuriy N; Ponomarenko, Sergei A; Ivanov, Dimitri A; Pietsch, Ullrich; Grigorian, Souren.
Afiliação
  • Mikayelyan E; Department of Physics, University of Siegen, Walter-Flex-Strasse 3, 57072, Siegen, Germany.
  • Grodd L; Department of Physics, University of Siegen, Walter-Flex-Strasse 3, 57072, Siegen, Germany.
  • Ksianzou V; Department of Engineering and Natural Sciences, Technical University of Applied Sciences Wildau, Hochschulring 1, 15745, Wildau, Germany.
  • Wesner D; Physical Chemistry I, Department of Chemistry and Biology & Research Center of Micro and Nanochemistry and Engineering (Cµ), University of Siegen, Adolf-Reichwein-Strasse 2, 57076, Siegen, Germany.
  • Rodygin AI; Faculty of Fundamental Physical and Chemical Engineering, Lomonosov Moscow State University, GSP-1, Leninskie gory1, Moscow, Russian Federation, 119991.
  • Schönherr H; Moscow Institute of Physics and Technology (State University), Institutskiy per. 9, Dolgoprudny, Russian Federation, 141700.
  • Luponosov YN; Physical Chemistry I, Department of Chemistry and Biology & Research Center of Micro and Nanochemistry and Engineering (Cµ), University of Siegen, Adolf-Reichwein-Strasse 2, 57076, Siegen, Germany.
  • Ponomarenko SA; Enikolopov Institute of Synthetic Polymeric Materials of Russian Academy of Sciences, Profsoyuznaya st. 70, Moscow, Russian Federation, 117393.
  • Ivanov DA; Enikolopov Institute of Synthetic Polymeric Materials of Russian Academy of Sciences, Profsoyuznaya st. 70, Moscow, Russian Federation, 117393.
  • Pietsch U; Chemistry Department, Lomonosov Moscow State University, Leninskie Gory 1-3, Moscow, Russian Federation, 119991.
  • Grigorian S; Faculty of Fundamental Physical and Chemical Engineering, Lomonosov Moscow State University, GSP-1, Leninskie gory1, Moscow, Russian Federation, 119991. dimitri.ivanov@uha.fr.
Nanoscale Res Lett ; 14(1): 185, 2019 May 30.
Article em En | MEDLINE | ID: mdl-31147864
ABSTRACT
A combination of in situ electrical and grazing-incidence X-ray diffraction (GIXD) is a powerful tool for studies of correlations between the microstructure and charge transport in thin organic films. The information provided by such experimental approach can help optimizing the performance of the films as active layers of organic electronic devices. In this work, such combination of techniques was used to investigate the phase transitions in vacuum-deposited thin films of a common organic semiconductor dihexyl-quarterthiophene (DH4T). A transition from the initial highly crystalline phase to a mesophase was detected upon heating, while only a partial backward transition was observed upon cooling to room temperature. In situ electrical conductivity measurements revealed the impact of both transitions on charge transport. This is partly accounted for by the fact that the initial crystalline phase is characterized by inclination of molecules in the plane perpendicular to the π-π stacking direction, whereas the mesophase is built of molecules tilted in the direction of π-π stacking. Importantly, in addition to the two phases of DH4T characteristic of the bulk, a third interfacial substrate-stabilized monolayer-type phase was observed. The existence of such interfacial structure can have important implications for the charge mobility, being especially favorable for lateral two-dimensional charge transport in the organic field-effect transistors geometry.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2019 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2019 Tipo de documento: Article