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Quasi-Homoepitaxial Junction of Organic Semiconductors: A Structurally Seamless but Electronically Abrupt Interface between Rubrene and Bis(trifluoromethyl)dimethylrubrene

[Image: see text] Single-crystalline organic semiconductors exhibiting band transport have opened new possibilities for the utilization of efficient charge carrier conduction in organic electronic devices. The epitaxial growth of molecular materials is a promising route for the realization of well-c...

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Autores principales: Takahashi, Kana, Izawa, Seiichiro, Ohtsuka, Naoya, Izumiseki, Atsuto, Tsuruta, Ryohei, Takeuchi, Riku, Gunjo, Yuki, Nakanishi, Yuki, Mase, Kazuhiko, Koganezawa, Tomoyuki, Momiyama, Norie, Hiramoto, Masahiro, Nakayama, Yasuo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2021
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8630783/
https://www.ncbi.nlm.nih.gov/pubmed/34792366
http://dx.doi.org/10.1021/acs.jpclett.1c03094
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author Takahashi, Kana
Izawa, Seiichiro
Ohtsuka, Naoya
Izumiseki, Atsuto
Tsuruta, Ryohei
Takeuchi, Riku
Gunjo, Yuki
Nakanishi, Yuki
Mase, Kazuhiko
Koganezawa, Tomoyuki
Momiyama, Norie
Hiramoto, Masahiro
Nakayama, Yasuo
author_facet Takahashi, Kana
Izawa, Seiichiro
Ohtsuka, Naoya
Izumiseki, Atsuto
Tsuruta, Ryohei
Takeuchi, Riku
Gunjo, Yuki
Nakanishi, Yuki
Mase, Kazuhiko
Koganezawa, Tomoyuki
Momiyama, Norie
Hiramoto, Masahiro
Nakayama, Yasuo
author_sort Takahashi, Kana
collection PubMed
description [Image: see text] Single-crystalline organic semiconductors exhibiting band transport have opened new possibilities for the utilization of efficient charge carrier conduction in organic electronic devices. The epitaxial growth of molecular materials is a promising route for the realization of well-crystallized organic semiconductor p–n junctions for optoelectronic applications enhanced by the improved charge carrier mobility. In this study, the formation of a high-quality crystalline interface upon “quasi-homoepitaxial” growth of bis(trifluoromethyl)dimethylrubrene (fmRub) on the single-crystal surface of rubrene was revealed by using out-of-plane and grazing-incidence X-ray diffraction techniques. Ultraviolet photoelectron spectroscopy results indicated abrupt electronic energy levels and the occurrence of band bending across this quasi-homoepitaxial interface. This study verifies that the minimization of the lattice mismatch enhances the crystalline qualities at the heterojunctions even for van der Waals molecular condensates, potentially opening an untested route for the realization of high-mobility organic semiconductor optoelectronics.
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spelling pubmed-86307832021-12-01 Quasi-Homoepitaxial Junction of Organic Semiconductors: A Structurally Seamless but Electronically Abrupt Interface between Rubrene and Bis(trifluoromethyl)dimethylrubrene Takahashi, Kana Izawa, Seiichiro Ohtsuka, Naoya Izumiseki, Atsuto Tsuruta, Ryohei Takeuchi, Riku Gunjo, Yuki Nakanishi, Yuki Mase, Kazuhiko Koganezawa, Tomoyuki Momiyama, Norie Hiramoto, Masahiro Nakayama, Yasuo J Phys Chem Lett [Image: see text] Single-crystalline organic semiconductors exhibiting band transport have opened new possibilities for the utilization of efficient charge carrier conduction in organic electronic devices. The epitaxial growth of molecular materials is a promising route for the realization of well-crystallized organic semiconductor p–n junctions for optoelectronic applications enhanced by the improved charge carrier mobility. In this study, the formation of a high-quality crystalline interface upon “quasi-homoepitaxial” growth of bis(trifluoromethyl)dimethylrubrene (fmRub) on the single-crystal surface of rubrene was revealed by using out-of-plane and grazing-incidence X-ray diffraction techniques. Ultraviolet photoelectron spectroscopy results indicated abrupt electronic energy levels and the occurrence of band bending across this quasi-homoepitaxial interface. This study verifies that the minimization of the lattice mismatch enhances the crystalline qualities at the heterojunctions even for van der Waals molecular condensates, potentially opening an untested route for the realization of high-mobility organic semiconductor optoelectronics. American Chemical Society 2021-11-18 2021-11-25 /pmc/articles/PMC8630783/ /pubmed/34792366 http://dx.doi.org/10.1021/acs.jpclett.1c03094 Text en © 2021 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Takahashi, Kana
Izawa, Seiichiro
Ohtsuka, Naoya
Izumiseki, Atsuto
Tsuruta, Ryohei
Takeuchi, Riku
Gunjo, Yuki
Nakanishi, Yuki
Mase, Kazuhiko
Koganezawa, Tomoyuki
Momiyama, Norie
Hiramoto, Masahiro
Nakayama, Yasuo
Quasi-Homoepitaxial Junction of Organic Semiconductors: A Structurally Seamless but Electronically Abrupt Interface between Rubrene and Bis(trifluoromethyl)dimethylrubrene
title Quasi-Homoepitaxial Junction of Organic Semiconductors: A Structurally Seamless but Electronically Abrupt Interface between Rubrene and Bis(trifluoromethyl)dimethylrubrene
title_full Quasi-Homoepitaxial Junction of Organic Semiconductors: A Structurally Seamless but Electronically Abrupt Interface between Rubrene and Bis(trifluoromethyl)dimethylrubrene
title_fullStr Quasi-Homoepitaxial Junction of Organic Semiconductors: A Structurally Seamless but Electronically Abrupt Interface between Rubrene and Bis(trifluoromethyl)dimethylrubrene
title_full_unstemmed Quasi-Homoepitaxial Junction of Organic Semiconductors: A Structurally Seamless but Electronically Abrupt Interface between Rubrene and Bis(trifluoromethyl)dimethylrubrene
title_short Quasi-Homoepitaxial Junction of Organic Semiconductors: A Structurally Seamless but Electronically Abrupt Interface between Rubrene and Bis(trifluoromethyl)dimethylrubrene
title_sort quasi-homoepitaxial junction of organic semiconductors: a structurally seamless but electronically abrupt interface between rubrene and bis(trifluoromethyl)dimethylrubrene
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8630783/
https://www.ncbi.nlm.nih.gov/pubmed/34792366
http://dx.doi.org/10.1021/acs.jpclett.1c03094
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