Open Access
Issue |
E3S Web Conf.
Volume 434, 2023
4th International Conference on Energetics, Civil and Agricultural Engineering (ICECAE 2023)
|
|
---|---|---|
Article Number | 02031 | |
Number of page(s) | 8 | |
Section | Civil Engineering | |
DOI | https://doi.org/10.1051/e3sconf/202343402031 | |
Published online | 12 October 2023 |
- M.D. Goldfein, B.A. Zyubin. Kinetics and mechanism of fiber-forming polymers based on acrylonitrile // High molecular weight compounds, -T(A) 32. -No 11. - p. 2243–2263. (2010). [Google Scholar]
- Huddleston J.G., Visser A.E., Reichert W.M., Willauer H.D., Broker G.A., Rogers R.D. //Gren Chem. V.3. -No 4. -P. 156. (2015). [Google Scholar]
- Y.S. Vygodsky, O.A. Melnik, E.I. Lozinskaya, A.S. Shaplov. Radical polymerization and copolymerization of acrylonitrile in ionic liquids// High Molecular Compounds. Series B, -T. 47. -No 4. - p. 704–709. (2005). [Google Scholar]
- R. V. Tomsa, M. S. Balashova, A. A. Shaovaa, A.Yu. Gerval'da, N.I. Prokopova, A.V. Plutalovab, N.A. Grebenkinac, and E.V. Chernikova. Copolymers of Acrylonitrile and Acrylic Acid: Effect of Composition and Distribution of Chain Units on the Thermal Behavior of Copolymers//Polymer Science, Series B, vol. 62, no. 2, pp. 102–115. (2020). [CrossRef] [Google Scholar]
- Pansheng Liu, Nana Zhang, Yanbin Yi, Magdi E. Gibril, Shoujuan Wang, Fangong Kong. Effect of lignin-based monomer on controlling themolecular weight and physical properties of the polyacrylonitrile/lignin copolymer //International Journal of Biological Macromolecules, 164 P. 2312–2322. (2020). [CrossRef] [Google Scholar]
- Mohamed E. Shaheen, Ahmed R. Ghazy, El-Refaie Kenawy, Riyad A. Ghazy, Farouk El-Mekawy. Experimental studies on static laser light scattering of synthetized poly (acrylonitrile-co-methyl methacrylate) copolymer at room temperature //Optik - International Journal for Light and Electron Optics, 224 165773. (2020). [CrossRef] [Google Scholar]
- E.V. Chernikova, R. V. Toms, A.Yu. Gervald, and N.I. Prokopov. Fiber-Forming Acrylonitrile Copolymers: From Synthesis to Properties of Carbon Fiber recursors and Prospects for Industrial Production//Polymer Science, Series C, vol. 62, no. 1, pp. 17–50. (2020). [CrossRef] [Google Scholar]
- Mustafa Mert Sirim, Vagolu Siva Krishna, Dharmarajan Sriram, Oya Unsal Tan. Novel benzimidazole-acrylonitrile hybrids and their derivatives: Design, synthesis and antimycobacterial activity //European Journal of Medicinal Chemistry 188, 112010 (2020). [CrossRef] [PubMed] [Google Scholar]
- Nan Zhang, André Said, Christian Wischke, Vivian Kral, Robert Brodwolf, Pierre Volz, Alexander Boreham, Christian Gerecke, Wenzhong Li, Axel T. Neffe, Burkhard Kleuser, Ulrike Alexiev, Andreas Lendlein, Monika Schäfer-Korting. Poly[acrylonitrile-co-(N-vinyl pyrrolidone)] nanoparticles-Composition-dependent skin penetration enhancement of a dye probe and biocompatibility //European Journal of Pharmaceutics and Biopharmaceutics 116-P. 66–75. (2017). [CrossRef] [PubMed] [Google Scholar]
- Shlyakhtin, A.V. Email Author, Lemenovskii, D.A., Nifant'ev, I.E., View Correspondence (jump link). Thermal behaviour of the copolymers of acrylonitrile with methyl acrylate and itaconic acid or its derivatives (Article) //Volume 91, Issue 6, June, P. 414–419. (2013). [Google Scholar]
- J.A. Dena-Aguilar, J. Jauregui-Rincon, A. Bonilla-Petriciolet, J. Romero-Garcia. Synthesis and characterization of aminated copolymers of polyacrylonitrile-graft-chitosan and their application for the removal of heavy metals from aqueous solution // J. Chil. Chem. Soc., 60, no. 2, -P. 2876–2880. (2015). [CrossRef] [Google Scholar]
- E.V. Chernikova, R.V. Toms, N.I. Prokopov et al. Thermooxidative stabilization of acrylonitrile terpolymers obtained under reversible chain- transfer conditions: Effects of synthesis temperature and initiation method //Polymer Science. Ser. B, -Vol.59. No 1. -P. 28–42. (2017). [CrossRef] [Google Scholar]
- P. V. Toms, N. I. Prokopov, A. Yu. Acrylonitrile, methyl acrylate and itaconic acid copolymers: synthesis at moderate temperatures and thermo-oxidative thermal stabilization //Polymers. Synthesis and Technology of Polymers, -X 5–6. (2016). [Google Scholar]
- R. V. Toms, M. S. Balashov, A. A. Shaova, A.Yu. Gerval'd, N.I. Prokopov, A.V. Plutalova, N.A. Grebenkina, and E.V. Chernikova. Copolymers of Acrylonitrile and Acrylic Acid: Effect of Composition and Distribution of Chain Units on the Thermal Behavior of Copolymers (in Russian)// Polymer Science, Series B, vol. 62, no. 2, pp. 102–115. (2020). [CrossRef] [Google Scholar]
- N.V. Timoshenko, S.N. Filatov. Copolymerization of acrylonitrile and methacrylic acid in aqueous medium // Advances in Chemistry and Chemical Technology, -T.25. No 3 (119). -p.45–49. (2011). [Google Scholar]
- A.G. Kharitonovich, L.A. Shcherbina, O.N.K.Yu. Osipenko, Development of a resource-saving technology for the preparation of fiber-forming copolymers of acrylonitrile by dimethylformamide method//ISSN 1683-0377. Proceedings of BSTU. Chemistry and technology of organic substances, materials and products, -X4. -p.147–153. (2015). [Google Scholar]
- Patent RU No. 2528395, 2014. Bulletin, No. 26, Method for the synthesis of acrylonitrile copolymers. Nifantiev I.E., Shlyakhtin A.V., Lemenovsky D.A. (2014). [Google Scholar]
- Patent RU X 2422467, Bulletin No 18, 2011. Acrylonitrile fibrous copolymer and the method of its production. Duflot V.R., Kitaeva N.K., Polikarpov V.V., Kasyanova E.A., Savinova N.S. (2011). [Google Scholar]
- E.V. Chernikova, Z.A. Lossyeva, A.V. Plutalova. Controlled copolymerization of acrylonitrile in mass by reversible chain transfer mechanism // High Molecular Compounds. Series B, -v. 56. - - No 2.-p. 119–127. (2014). [Google Scholar]
- Pulatova N.U., Maksumova O.S. Synthesis of esters based on piperidine// The scientific method. Warszava, Poland - X10. - P.26–28. (2017). [Google Scholar]
- Gordon A., Ford R. // Chemist's Companion. Moscow: Mir. - - 641 p. (1999). [Google Scholar]
- Egamberdiev E.; Ergashev Y.; Turabdjanov S.; Abdumavlyanova M.; Makhkamov A.; Rashidov Sh.; Karimov Sh.: Effect of chitosan on the surface properties of cellulose-based paper obtained from the flax plant. E3S Web of Conferences 371, 01010 (2023) [CrossRef] [EDP Sciences] [Google Scholar]
- Toroptseva A.M., Belgorodskaya K.V., Bondarenko V.M. Laboratory practical work on chemistry and technology of high-molecular compounds. L.: Chemistry, -416 p. 2012. [Google Scholar]
Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.
Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.
Initial download of the metrics may take a while.