volume 12 issue 8 pages 9507-9519

Fluorinated Thiophene-Phenylene Co-Oligomers for Optoelectronic Devices

Andrey Yu Sosorev 1, 2, 3
V. A. Trukhanov 1, 3
Dmitry R Maslennikov 1, 2, 3
Roman A Polyakov 3
Nikolay M. Surin 3
Publication typeJournal Article
Publication date2020-02-03
scimago Q1
wos Q1
SJR1.921
CiteScore14.5
Impact factor8.2
ISSN19448244, 19448252
General Materials Science
Abstract
Organic optoelectronics requires materials combining bright luminescence and efficient ambipolar charge transport. Thiophene-phenylene co-oligomers (TPCOs) are promising highly emissive materials with decent charge-carrier mobility; however, they typically show poor electron injection in devices, which is usually assigned to high energies of their lowest unoccupied molecular orbitals (LUMOs). A widely used approach to lower the frontier orbitals energy levels of a conjugated molecule is its fluorination. In this study, we synthesized three new fluorinated derivatives of one of the most popular TPCOs, 2,2'-(1,4-phenylene)bis[5-phenylthiophene] (PTPTP) and studied them by cyclic voltammetry, absorption, photoluminescence, and Raman spectroscopies. The obtained data reveal a positive effect of fluorination on the optoelectronic properties of PTPTP: LUMO levels are finely tuned, and photoluminescence quantum yield and absorbance are increased. We then grew crystals from fluorinated PTPTPs, resolved their structures, and showed that fluorination dramatically affects the packing motif and facilitates π-stacking. Finally, we fabricated thin-film organic field-effect transistors (OFETs) and demonstrated a strong impact of fluorination on charge injection/transport for both types of charge carriers, namely, electrons and holes. Specifically, balanced ambipolar charge transport and electroluminescence were observed only in the OFET active channel based on the partially fluorinated PTPTP. The obtained results can be extended to other families of conjugated oligomers and highlight the efficiency of fluorination for rational design of organic semiconductors for optoelectronic devices.
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Sosorev A. Yu. et al. Fluorinated Thiophene-Phenylene Co-Oligomers for Optoelectronic Devices // ACS applied materials & interfaces. 2020. Vol. 12. No. 8. pp. 9507-9519.
GOST all authors (up to 50) Copy
Sosorev A. Yu., Trukhanov V. A., Maslennikov D. R., Borshchev O. V., Polyakov R. A., Skorotetcky M. S., Surin N. M., Kazantsev M. S., Dominskiy D. I., Тафеенко В. А., Ponomarenko S. A., Paraschuk D. Y. Fluorinated Thiophene-Phenylene Co-Oligomers for Optoelectronic Devices // ACS applied materials & interfaces. 2020. Vol. 12. No. 8. pp. 9507-9519.
RIS |
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RIS Copy
TY - JOUR
DO - 10.1021/acsami.9b20295
UR - https://doi.org/10.1021/acsami.9b20295
TI - Fluorinated Thiophene-Phenylene Co-Oligomers for Optoelectronic Devices
T2 - ACS applied materials & interfaces
AU - Sosorev, Andrey Yu
AU - Trukhanov, V. A.
AU - Maslennikov, Dmitry R
AU - Borshchev, Oleg V.
AU - Polyakov, Roman A
AU - Skorotetcky, Maxim S.
AU - Surin, Nikolay M.
AU - Kazantsev, Maxim S.
AU - Dominskiy, Dmitry I
AU - Тафеенко, В. А.
AU - Ponomarenko, Sergey A.
AU - Paraschuk, Dmitry Yu.
PY - 2020
DA - 2020/02/03
PB - American Chemical Society (ACS)
SP - 9507-9519
IS - 8
VL - 12
PMID - 32009377
SN - 1944-8244
SN - 1944-8252
ER -
BibTex |
Cite this
BibTex (up to 50 authors) Copy
@article{2020_Sosorev,
author = {Andrey Yu Sosorev and V. A. Trukhanov and Dmitry R Maslennikov and Oleg V. Borshchev and Roman A Polyakov and Maxim S. Skorotetcky and Nikolay M. Surin and Maxim S. Kazantsev and Dmitry I Dominskiy and В. А. Тафеенко and Sergey A. Ponomarenko and Dmitry Yu. Paraschuk},
title = {Fluorinated Thiophene-Phenylene Co-Oligomers for Optoelectronic Devices},
journal = {ACS applied materials & interfaces},
year = {2020},
volume = {12},
publisher = {American Chemical Society (ACS)},
month = {feb},
url = {https://doi.org/10.1021/acsami.9b20295},
number = {8},
pages = {9507--9519},
doi = {10.1021/acsami.9b20295}
}
MLA
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MLA Copy
Sosorev, Andrey Yu., et al. “Fluorinated Thiophene-Phenylene Co-Oligomers for Optoelectronic Devices.” ACS applied materials & interfaces, vol. 12, no. 8, Feb. 2020, pp. 9507-9519. https://doi.org/10.1021/acsami.9b20295.