Synthesis of Aromatic Polyethersulfones

Article Preview

Abstract:

Modified aromatic polyethersulfones containing dichloroethylene and arylate groups in the main chain were modified . The kinetics of the synthesis of polyethersulfones by the method of acceptor-catalytic polycondensation was studied. By the methods of IR spectroscopy, elemental, X-ray phase analysis, the formation of polymers of a given structure is proved. It is shown that the property of the obtained polymers depends on the ratio of the starting monomers.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

15-20

Citation:

Online since:

October 2020

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2020 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] L.M. Bolotina, V.P. Chebotarev, Development of research in the field of chemistry and technology of aromatic polysulfones, Plastics.  11 (2003) 3-7.

Google Scholar

[2] V.D. Alpern, Z.G. Kagramanov, Sulphonic polymers from SOLVAY.  Properties and application, Plastics. 11 (2006) 3-6.

Google Scholar

[3] V.P. Snesarevsky, The use of POLYPLASTIC materials in the manufacture of automotive electrical equipment, Plastics. 6 (2001) 36-38.

Google Scholar

[4] O.E. Peksimov, V.A. Balabanova, I.L. Dinzburg, S.I. Kazakov, Heat-resistant structural thermoplastics – polysulfones of the PSF-190, UDEL P-1700 brand.  Thermophysical, dielectric, physical and mechanical properties in a wide range of temperatures and test speeds, Plastics. 11 (2013) 20-21.

Google Scholar

[5] A.M. Kharaev, R.Ch. Bazheva, E.B. Barokova, T.R. Umerova, Block-copolysulfonarilates of Polycondensational Type, Modern Tendencies in Organic and Bioorganic Chemistry: Today and Tomorrow. 17 (2008) 211-214.

Google Scholar

[6] M. Padaki, A.M. Isloor, P. Wanichapichart polysulfone/n-phthaloylchitosan novel composite membranes for salt rejection application, Desalination. 279 (2011) 409-414.

DOI: 10.1016/j.desal.2011.06.045

Google Scholar

[7] L.A. Zenitova, E.M. Steinberg, Polysulfone as a functional polymer material and its production, International Scientific Journal. 6 (2012) 23-28.

Google Scholar

[8] G.J. Summers, M.P. Ndawuni, C.A. Summers, Chemical modification of polysulfone: anionic synthesis of dipyridyl functionalized polysulfone, Polymer. 42 (2001) 397-402.

DOI: 10.1016/s0032-3861(00)00345-1

Google Scholar

[9] E.B. Barokova, A.M. Kharaev, R.C. Bazheva, T.R. Umerova, Block-copolysulfonarilates of polycondensational type, in: A.K. Mikitaev, M.K. Ligidov, G.E. Zaikov (Eds.), Modern Tendencies in Organic and Bioorganic Chemistry: Today and Tomorrow, New York, 2008, pp.211-214.

Google Scholar

[10] M. García, J.I. Eguiazábal, J. Nazábal Structure and mechanical properties of polysulfone-based in situ composites, Polymer International. 53 (2004) 272-278.

DOI: 10.1002/pi.1333

Google Scholar

[11] S. Ozden, A.M. Kharayev, A.Kh. Shaov, R.Ch. Bazheva, The synthesis of blok-copolyetheketones on 4,4´-dichlodiphenylketone, phenolphthaleine and bisphenol A and investigation of their properties, J. Applied Polymer Science. 107 (2008) 2459-2465.

DOI: 10.1002/app.27312

Google Scholar

[12] V.A. Nelyub, A.S. Borodulin, Properties of epoxy materials used for production of glass-reinforced plastics by the winding method, Polymer Science. Series D. 11 (2018) 147-153.

DOI: 10.1134/s1995421218020132

Google Scholar

[13] A.M. Kharaev, R.C. Bazheva, E.B. Barokova, O.L. Istepanova, R.A. Kharaeva, A.A. Chaika, Fireproof aromatic block copolymer resin on the basis of 1,1-dichlor-2,2 di(n-oxyphenyl)ethylene, in: A.K. Mikitaev, M.K. Ligidov, G.E. Zaikov (Eds.), Modern Tendencies in Organic and Bioorganic Chemistry: Today and Tomorrow, New York, 2008, pp.219-222.

Google Scholar

[14] R.Ch. Bazheva, A.S. Borodulin, A.N. Kalinnikov, A.M. Charaev, Polymer composites based on halogen-containing oligoethers, IOP Conference Series: Materials Science and Engineering. 683 (2018) 012051.

DOI: 10.1088/1757-899x/683/1/012051

Google Scholar

[15] A.M. Charayev, A.H. Shaov, G.B. Shustov A.K. Mikitaev, Synthesis and Properties of Polyetheretherketones, Chemistry and chemical technology. 41 (1998) 78-81.

Google Scholar

[16] S. Ozden, A.M. Kharayev, R.Ch. Bazheva, Synthesis and modification of aromatic polyesters with chloroacetyl 3,5-dibromo-p-hydroxybenzoic acid, J. Appl. Pol. Sci. 111 (2009) 1755-1762.

DOI: 10.1002/app.29147

Google Scholar

[17] A.M. Kharaev, R.Ch. Bazheva, M.B. Begieva, V.A. Nelyub, A.S. Borodulin, Polyethersulfones with improved thermophysical properties, Polymer Science. Series D. 12 (2019) 24-28.

DOI: 10.1134/s1995421219010076

Google Scholar

[18] A. Borodulin, A. Kalinnikov, A. Tereshkov, A. Kharaev, New polymeric binders for the production of composites, Materials Today: Proceedings. (2019) 139-143.

DOI: 10.1016/j.matpr.2018.12.121

Google Scholar

[19] A.S. Borodulin, A.N. Kalinnikov, R.Ch. Bazheva, A.M. Kharaev, B.Z. Beshtoev, Receipt and investigation of performance characteristics of super constructions polyesters, International Journal of Mechanical Engineering and Technology. 9 (2018) 1117-1127.

DOI: 10.4028/www.scientific.net/kem.816.307

Google Scholar

[20] A.S. Borodulin, Polyester resins for production of goods from polymer composite materials by pressing methods, Polymer Science. Series D. 6 (2013) 269-270.

DOI: 10.1134/s1995421213030052

Google Scholar