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Fluorene-based π-conjugated polymers for OLEDs: advances, opportunities, and challenges

Anton Aleksandrovich Yakimanskiy 1
Anton Aleksandrovich Yakimanskiy
Alexander Mikhailovich Mitroshin 1
Alexander Mikhailovich Mitroshin
Tatiana Gennadievna Chulkova 1
Tatiana Gennadievna Chulkova
Aleksandr Vadimovich Yakimanskii
1 Institute of Macromolecular Compounds, Russian Academy of Sciences, St. Petersburg, Russian Federation
Published 2024-09-09
CommunicationVolume 34, Issue 5, 609-629
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Yakimanskiy A. A. et al. Fluorene-based π-conjugated polymers for OLEDs: advances, opportunities, and challenges // Mendeleev Communications. 2024. Vol. 34. No. 5. pp. 609-629.
GOST all authors (up to 50) Copy
Yakimanskiy A. A., Mitroshin A. M., Chulkova T. G., Miltsov S. A., Yakimanskii A. V. Fluorene-based π-conjugated polymers for OLEDs: advances, opportunities, and challenges // Mendeleev Communications. 2024. Vol. 34. No. 5. pp. 609-629.
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TY - JOUR
DO - 10.1016/j.mencom.2024.09.001
UR - https://mendcomm.colab.ws/publications/10.1016/j.mencom.2024.09.001
TI - Fluorene-based π-conjugated polymers for OLEDs: advances, opportunities, and challenges
T2 - Mendeleev Communications
AU - Yakimanskiy, Anton Aleksandrovich
AU - Mitroshin, Alexander Mikhailovich
AU - Chulkova, Tatiana Gennadievna
AU - Miltsov, Sergey Aleksandrovich
AU - Yakimanskii, Aleksandr Vadimovich
PY - 2024
DA - 2024/09/09
PB - Mendeleev Communications
SP - 609-629
IS - 5
VL - 34
ER -
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@article{2024_Yakimanskiy,
author = {Anton Aleksandrovich Yakimanskiy and Alexander Mikhailovich Mitroshin and Tatiana Gennadievna Chulkova and Sergey Aleksandrovich Miltsov and Aleksandr Vadimovich Yakimanskii},
title = {Fluorene-based π-conjugated polymers for OLEDs: advances, opportunities, and challenges},
journal = {Mendeleev Communications},
year = {2024},
volume = {34},
publisher = {Mendeleev Communications},
month = {Sep},
url = {https://mendcomm.colab.ws/publications/10.1016/j.mencom.2024.09.001},
number = {5},
pages = {609--629},
doi = {10.1016/j.mencom.2024.09.001}
}
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Cite this
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Yakimanskiy, Anton Aleksandrovich, et al. “Fluorene-based π-conjugated polymers for OLEDs: advances, opportunities, and challenges.” Mendeleev Communications, vol. 34, no. 5, Sep. 2024, pp. 609-629. https://mendcomm.colab.ws/publications/10.1016/j.mencom.2024.09.001.

Keywords

copolyfluorenes
electroluminescence
fluorescence
MR-TADF
OLEDs
phosphorescence
PLED
TADF.

Abstract

Copolyfluorenes have drawn considerable attention owing to their remarkable optoelectronic characteristics, chemical and thermal stability, good film-forming properties, and thus present an active subject of cutting-edge research in the organic electroluminescence. This current systematic review examines and summarizes the latest research on copolyfluorene-based materials for light emitting layers of OLEDs over the past decades.

References

.
Korshunov V.M., Chmovzh T.N., Chkhetiani G.R., Taydakov I.V., Rakitin O.A.
Mendeleev Communications, 2022
.
Gribanov P.S., Loginov D.A., Lypenko D.A., Dmitriev A.V., Tokarev S.D., Aleksandrov A.E., Tameev A.R., Chernyadyev A.Y., Osipov S.N.
Mendeleev Communications, 2023
.
Synthesis and optoelectronic properties of conjugated phosphorescent copolyfluorenes containing iridium complexes in main chains and light-emitting diodes formed on their basis
Keshtov M.L., Maltsev E.I., Marochkin D.V., Lypenko D.A., Kuklin S.A., Smol’yakov A.F., Khokhlov A.R.
Polymer Science - Series B, 2014
.
Light-emitting diodes based on conjugated polymers
Burroughes J.H., Bradley D.D., Brown A.R., Marks R.N., Mackay K., Friend R.H., Burns P.L., Holmes A.B.
Nature, 1990
.
Synthesis, Light-Emitting, and Two-Photon Absorption Properties of Platinum-Containing Poly(arylene-ethynylene)s Linked by 1,3,4-Oxadiazole Units
Goudreault T., He Z., Guo Y., Ho C., Zhan H., Wang Q., Ho K.Y., Wong K., Fortin D., Yao B., Xie Z., Wang L., Kwok W., Harvey P.D., Wong W., et. al.
Macromolecules, 2010
.
Synthesis and Crystal Structure of Highly Strained [4]Cyclofluorene: Green-Emitting Fluorophore
Liu Y., Lin J., Bo Y., Xie L., Yi M., Zhang X., Zhang H., Loh T., Huang W.
Organic Letters, 2015
.
Fluorescence Enhancement of a Cationic Fluorene–Phenylene Conjugated Polyelectrolyte Induced by Nonionicn-Alkyl Polyoxyethylene Surfactants
Monteserín M., Burrows H.D., Valente A.J., Pais A.A., Di Paolo R.E., Maçanita A.L., Tapia M.J.
Langmuir, 2017
.
Conjugated Nanopolymer Based on a Nanogrid: Approach toward Stable Polyfluorene-Type Fluorescent Emitter for Blue Polymer Light-Emitting Diodes
Feng Q., Xie S., Tan K., Zheng X., Yu Z., Li L., Liu B., Li B., Yu M., Yu Y., Zhang X., Xie L., Huang W.
ACS Applied Polymer Materials, 2019
.
D-π-A polysulfones for blue electroluminescence
Geng Z., Sato G., Marumoto K., Kijima M.
Journal of Polymer Science, Part A: Polymer Chemistry, 2016
.
Deep-blue light-emitting polyfluorenes containing spiro[fluorene-9,9′-thioxanthene-S,S -dioxide] isomers
Peng F., Xu J., Zhang Y., He R., Yang W., Cao Y.
Journal of Polymer Science, Part A: Polymer Chemistry, 2017
.
Deep‐blue light‐emitting polyfluorenes with asymmetrical naphthylthio‐fluorene as Chromophores
Hu L., Wu Z., Wang X., Ma Y., Guo T., Ying L., Peng J., Cao Y.
Journal of Polymer Science, Part A: Polymer Chemistry, 2018
.
Saturated Red Electroluminescence From Thermally Activated Delayed Fluorescence Conjugated Polymers
Zhan H., Wang Y., Li K., Chen Y., Yi X., Bai K., Xie G., Cheng Y.
Frontiers in Chemistry, 2020
.
Synthesis and Properties of Main-Chain Phosphorescent Polymer with Iridium Complex
Liu C., Li D., Xing G., Chen L., Lin M., Ling Q.
Russian Journal of General Chemistry, 2019
.
Semiconducting polyfluorenes with electrophosphorescent on-chain platinum–salen chromophores
Galbrecht F., Yang X.H., Nehls B.S., Neher D., Farrell T., Scherf U.
Chemical Communications, 2005
.
Efficient binary white light-emitting polymers grafted with iridium complexes as side groups
Guo T., Zhong W., Zou J., Ying L., Yang W., Peng J.
RSC Advances, 2015
.
A novel white-light-emitting conjugated polymer derived from polyfluorene with a hyperbranched structure
Sun J., Yang J., Zhang C., Wang H., Li J., Su S., Xu H., Zhang T., Wu Y., Wong W., Xu B.
New Journal of Chemistry, 2015
.
Highly efficient white electroluminescence from dual-core star-shaped single polymer: performance improved by changing the non-emissive core
Zhao Y., Liu Z., Wang J., Chen Y., Cui G., Xiao W., Lin Z., Ling Q.
Journal of Materials Chemistry C, 2018
.
Controllable supramolecular chain aggregation through nano-steric hindrance functionalization for multi-color larger-area electroluminescence
Xu M., Wang W., Bai L., Yu M., Han Y., Lin J., Zhang X., Ling H., Lin Z., Huang L., Xie L., Zhao J., Wang J., Huang W.
Journal of Materials Chemistry C, 2018
.
Systematic investigation of self-organization behavior in supramolecular π-conjugated polymer for multi-color electroluminescence
Lin J., Liu B., Yu M., Wang X., Bai L., Han Y., Ou C., Xie L., Liu F., Zhu W., Zhang X., Ling H., Stavrinou P.N., Wang J., Bradley D.D., et. al.
Journal of Materials Chemistry C, 2018
.
Synthesis and properties of hyperbranched polymers for polymer light emitting devices with sunlight-style white emission
.
Synthesis and properties of hyperbranched polymers for white polymer light-emitting diodes
Li X., Zhao H., Gao L., Xie X., Zhang W., Wang M., Wu Y., Miao Y., Wang H., Xu B.
RSC Advances, 2019
.
Synthesis and photo- and electroluminescent properties of copolyfluorenes with nile red fragments in side chains
Nosova G.I., Lypenko D.A., Smyslov R.Y., Berezin I.A., Zhukova E.V., Mal’tsev E.I., Dmitriev A.V., Litvinova L.S., Solovskaya N.A., Dobrokhotov O.V., Abramov I.G., Yakimanskii A.V.
Polymer Science - Series B, 2014
.
Bipolar Blue Light-emitting Polyfluorenes Containing Dibenzothiophene-S,S-dioxide/Carbazole Units
Liang L., Liu J., Zhang Y., Hu L., Guo T., Yang W., Cao Y.
Chemical Research in Chinese Universities, 2018
.
Multilayer Light-Emitting Diodes Based on Organic Semiconductor Polymers
Gadirov R.M., Odod A.V., Kurtsevich A.E., Ilgach D.M., Yakimansky A.V., Kopylova T.N.
Russian Physics Journal, 2018
.
Synthesis and photoelectric properties of new Pr-bonded polymers by coordination of isopropyloxide and bipyridine unit
Lv W., Wang W., Zhang C., Zhao Y., Zhen H., Ling Q.
Chinese Journal of Polymer Science (English Edition), 2017
.
Blue light-emitting polyfluorenes containing dibenzothiophene-S,S-dioxide unit in alkyl side chain
Fang Y., Liu J., Zhang Y., Guo T., Huang F., Yang W., Cao Y.
Science China Chemistry, 2017
.
Green-emitting Polyfluorenes Containing Hexylthiophen-dibenzothiophene-S,S-dioxide Unit with Large Two-photon Absorption Cross Section
Hu L., Liang L., Yang Y., Guo T., Zhang Y., Yang W., Cao Y.
Chinese Journal of Polymer Science (English Edition), 2017
.
Hyperbranched red light-emitting phosphorescent polymers based on iridium complex as the core
Guo T., Yu L., Yang Y., Li Y., Tao Y., Hou Q., Ying L., Yang W., Wu H., Cao Y.
Journal of Luminescence, 2015
.
Nosova G.I., Ilgach D.M., Berezin I.A., Zhukova E.V., Kopylova T.N., Nikonova E.N., Gadirov R.M., Smyslov R.Y., Yakimansky A.V.
Mendeleev Communications, 2017
.
Ilgach D.M., Nosova G.I., Kopylova T.N., Nikonova E.N., Gadirov R.M., Smyslov R.Y., Litvinova L.S., Yakimansky A.V.
Mendeleev Communications, 2017
.
Thermal annealing effect on light emission profile of polyfluorenes containing double bond subunit
Pıravadılı Mucur S., Kacar R., Meric C., Koyuncu S.
Organic Electronics, 2017
.
Semi-orthogonal solution-processed polyfluorene derivative for multilayer blue polymer light-emitting diodes
Ma Y., Peng F., Guo T., Jiang C., Zhong Z., Ying L., Wang J., Yang W., Peng J., Cao Y.
Organic Electronics, 2018
.
Efficient blue light-emitting polymers containing fluorene[2,3-b]benzo[d]thiophene-S,S-dioxide unit
Zhang Y., Hu L., Xu J., He R., Liang J., Peng F., Yang W., Cao Y.
Organic Electronics, 2018
.
Synthesis of a fluorene and quinoxaline-based co-polymer for organic electronics
Sigl M., Rath T., Schlemmer B., Fürk P., Trimmel G.
Monatshefte fur Chemie, 2023
.
Synthesis and properties of blue-light-emitting Oligo(fluorene-co-dibenzothiophene-S,S-dioxide)s
Hu L., Zhang Y., Guo T., Ying L., Xiong J., Yang W., Cao Y.
Dyes and Pigments, 2019
.
Lypenko D.A., Nosova G.I., Berezin I.A., Tameev A.R., Mal’tsev E.I.
Mendeleev Communications, 2020
.
Copolyfluorenes containing carbazole or triphenylamine and Diethoxylphosphoryl groups in the side chains as white-light-emitting polymers
Nosova G.I., Lypenko D.A., Smyslov R.Y., Zhukova E.V., Berezin I.A., Litvinova L.S., Maltsev E.I., Yakimansky A.V.
Polymer, 2020
.
Pulsed laser thin film growth of di-octyl substituted polyfluorene and its co-polymers
Gupta R.K., Ghosh K., Kahol P.K., Yoon J., Guha S.
Applied Surface Science, 2008
.
Synthesis and optical properties of a fluorene-benzothiadiazole anthracene copolymer
de Morais A., Duarte L.G., Turchetti D.A., Mendes R.A., de Freitas J.N., Atvars T.D., Cristovan F.H., Domingues R.A.
Synthetic Metals, 2022
.
Intrinsically Stretchable And Efficient Fully Π‐Conjugated Polymer via Internal Plasticization for Flexible Deep‐blue Polymer Light‐emitting Diodes with CIEy = 0.08
Zhuo Z., Ni M., An X., Bai L., Liang X., Yang J., Zheng Y., Liu B., Sun N., Sun L., Wei C., Yu N., Chen W., Li M., Xu M., et. al.
Advanced Materials, 2023
.
Synthesis, Photo- and Electroluminescence of New Polyfluorene Copolymers Containing Dicyanostilbene and 9,10-Dicyanophenanthrene in the Main Chain
Yakimanskiy A.A., Kaskevich K.I., Zhukova E.V., Berezin I.A., Litvinova L.S., Chulkova T.G., Lypenko D.A., Dmitriev A.V., Pozin S.I., Nekrasova N.V., Tomilin F.N., Ivanova D.A., Yakimansky A.V.
Materials, 2023