On the Synthesis of Copolyarylene Ether Ketones by Nucleophilic Substitution Reaction

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Abstract:

The dependence of the reduced viscosity of copolyarylene ether ketones on the chemical structure of diols and the conditions for copolycondensation is studied. It was shown that the structure of diols and the order of their introduction into the polycondensation reaction affect the reduced viscosity, impact strength, and temperature characteristics of copolyarylene ether ketones.

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532-537

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October 2020

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© 2020 Trans Tech Publications Ltd. All Rights Reserved

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[1] Yu.A. Mikhailin, Heat-resistant polymers and polymeric materials, Russia, St. Petersburg, (2006).

Google Scholar

[2] A.A. Zhansitov, S.Yu. Khashirova, A.S. Shabaev, Zh.I. Kurdanova, A.L. Slonov, A.A. Khashirov, A.K. Mikitaev, Development of technology of polysulfone production for 3D-printing, High Performance Polymers. 29 (2017) P. 724-729.

DOI: 10.1177/0954008317704500

Google Scholar

[3] A.A. Zhansitov, A.L. Slonov, R.A. Shetov, A.E. Baikaziev, K.T. Shakhmurzova, Zh.I. Kurdanova, S.Yu. Khashirova, Synthesis and properties of polyetheretherketones for 3D-printing, Fibre Chemistry. 49 (2018) 414-419.

DOI: 10.1007/s10692-018-9911-5

Google Scholar

[4] A.A. Beev, D.A. Beeva, Synthesis of aromatic copolyester ethers by high-temperature nonequilibrium polycondensation, Sat. scientific Proceedings of the international. scientific and practical conf. Development of science and technology: problems and development prospects,, St. Petersburg, (2017) 331-336.

Google Scholar

[5] A.A. Beev, S.Yu. Khashirova, D.A. Beeva, et al., Copolyarylene ether ketones based on 4,4'-dioxidiphenyl and phenolphthalein, Izvestiya KBSU. 7 (2017) 14-17.

Google Scholar

[6] A.A. Beev, S.Yu. Khashirova, D.A. Beeva, Aromatic copolyetherketones based on hydroquinone, Chemical fibers. 6 (2017) 65-68.

Google Scholar

[7] A.A. Beev, S.Yu. Khashirova, D.A. Beeva, et al., Aromatic Copolyether Ether Ketones Derived From Hydroquinone, Fibre Chemistry. 49 (2018) 411-413.

DOI: 10.1007/s10692-018-9910-6

Google Scholar

[8] V.V. Shaposhnikova, S.N. Salazkin, V.A. Sergeev, Patterns of the reaction of 4,4ʹ-difluorobenzophenone with potassium diphenolate of 2,2-bis(4-hydroxyphenyl)propane, Izv. Akademii Nauk. 10 (1996) 2526-2530.

Google Scholar

[9] Yu.I. Musaev, A.M. Kharaev, E.B. Musaeva, et al., Synthesis and some properties of new hydroxyl-containing aromatic monomers and polyethers based on them, Investigated in Russia. 207 (2006) 1962-1981.

Google Scholar

[10] Yu.I. Musaev, Synthesis features and reaction mechanisms for the production of polyarylates, aromatic polyethers and polypyrroles in non-aqueous media, Diss. for a doctorate degree. Chem. Sciences, Nalchik, (2004).

Google Scholar