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This paper presents the results of the study of radical copolymerization
of N-morpholine-3-chloro-isopropylacrylate with styrene in the presence of
azobisisobutyronitrile. The composition, properties depending on the ratio of initial
comonomers in the mixture and the structure of the synthesized copolymers have been
determined.

  • Web Address
  • DOI
  • Date of creation in the UzSCI system05-09-2022
  • Read count47
  • Date of publication30-06-2022
  • Main LanguageIngliz
  • Pages39-42
English

This paper presents the results of the study of radical copolymerization
of N-morpholine-3-chloro-isopropylacrylate with styrene in the presence of
azobisisobutyronitrile. The composition, properties depending on the ratio of initial
comonomers in the mixture and the structure of the synthesized copolymers have been
determined.

Author name position Name of organisation
1 Saidov J.. teacher TSTU
2 Urinov U.. teacher TSTU
Name of reference
1 N.S.Shaglaeva, V.G.Dronov, R.G.Sultangareev, E.A.Orkhokova.Copolymerization of 2,3-dichloropropene-1 with styrene. “Bulletin of ISTU”. 2010. 206
2 M.A. Chernigovskaya, T.V. Raskulov. Radical copolymerization of styrene and unsaturated glycidyl ethers. From the news of universities. “Applied Chemistry and Biotechnology”. 2013. 22
3 G.A. Khudoynazarova, B.A. Mavlonov, O.M. Yariev, M. Khozhieva. Study of the kinetics of copolymerization of 6-bromobenzoxazolonylmethyl acrylate with styrene. “Advances in chemistry and chemical technology”. 2003. 125
4 U.K. Urinov, O.S. Maksumova. “Polymerisation of N-morpholine-3- clorineizopropylacrylate. European Applied Sciences”. 2016. 38
5 G.B. Volodina, I.V. Yakunina. Laboratory workshop on organic chemistry. “Publishing House”. 2004. 80
6 A.M. Toroptseva, K.V. Belogorodskaya, V.M. Bondarenko. “Laboratory workshop on chemistry and technology of macromolecular compounds”. 1972. 416
7 S.K. Moiseev, I.V. Bakhanova, G. Schmidhammer, V.N. Kalinin. Synthesis of Nphenyl- substituted derivatives of morpholine alkaloids. “Proceedings of the Academy of Sciences. Chemical series”. 2013. 240
8 E.V. Kharitonova, O.E. Zhuravlev, V.M. Chervinets, L.I. Voronchikhina, M.A. Demidova. “Synthesis and antimicrobial activity of tetrachloroferrates of quaternary ammonium, pyridinium and morpholinium. Chemical and Pharmaceutical Journal”. 2012. 6
9 A.B. Mirgorodskaya, S.S. Lukashenko, E.I. Yatskevich, N.V. Kulik, A.D. Voloshina, D.B. Kudryavtsev, A.R. Panteleeva, V.V. Zobov, L.Y. Zakharova. “Aggregation behavior, anticorrosive action and antimicrobial activity of alkylmethylmorpholine bromides //Physical chemistry of surface and protection of materials”. 2014. 434
10 M.A. Dyusebaeva, S.N. Kalugin, Sh.S. Akhmedova. Synthesis and intramolecular cyclization of thiosemicarbazide morpholylacetic acid. “Bulletin of KazNU. Chemical series”. 2015. 68
11 A.B. Mirgorodskaya, E.I. Yatskevich, S.S. Lukashenko. Acid-base properties and nucleophilicity of decylamine in aqueous micellar solutions of cationic surfactants with hydroxyalkyl fragments in the head group. “Liquid crystals and their practical use”. 2009. 13
12 U.K. Urinov, O.S. Maksumova. Synthesis and properties of new derivatives of morpholine. “Composite materials”. 2013. 16
13 L.P. Rychkova. Adjustable IR heating in the drying processes of pine nuts: abstract. dis. “Candidate of Technical Sciences”. 1990. 25
14 R.S. Reshetova. Electromagnetic processing during beet storage and processing. “News of University Food technology”. 2011. 123
15 L.A. Lyagina. Improving the efficiency of drying products of plant origin due to infrared-convective effects: abstract. dis. “Candidate of Technical Sciences”. 2010. 23
16 A.S. Ginzburg. Calculation and design of drying plants of the food industry. “Agropromizdat”. 1985. 335
17 A.A. Gukhman. Introduction to the theory of similarity. “Higher School”. 1973. 254
18 I.V. Altukhov. Reduction of energy consumption in the processes of drying vegetable raw materials. Actual problems of agro industrial complex: mat. region. “Scientific and practical conference”. 2005. 15
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