Constant Magnetic Field Influence on (Meth)Acrylic Esters Polymerisation in the Presence of Polyvinylpyrrolidone

The Innovations, Nanotechnologies, and Catalysis in the Chemical and Food Industries
pp.
285-290
Abstract

The influence of a constant magnetic field on the polymerization of (meth)acrylic esters in composition with polyvinylpyrrolidone has been studied. It has been found that the magnetic field promotes complex formation, accelerates polymerization, and formation of a more ordered structure of copolymers. The obtained materials are characterized by increased hardness, heat resistance, hydrophilicity, and permeability for solutions of low molecular weight substances, making them suitable for application in the production of contact lenses and implants.

Author (co-authors)
First name Last name Institutional affiliation E-mail Phone number ORCID ID Academic status, position Institution address Author contribution(s) Institutional affiliation
Galyna
Dudok
halyna.d.dudok@lpnu.ua
Ukraine, Lviv, 12 Bandery str.
Writing – Original Draft Preparation
Department of Chemical Technology and Plastics Processing
Natalia
Semenyuk
nataliia.b.semeniuk@lpnu.ua
Ukraine, Lviv, 12 Bandery str.
Writing – Original Draft Preparation
Department of Chemical Technology and Plastics Processing
Taras
Behei
taras.s.behei@lpnu.ua
12 Bandery str.
Visualization
Department of Chemical Technology and Plastics Processing
Volodymyr
Skorokhoda
volodymyr.yo.skorokhoda@lpnu.ua
Ukraine, Lviv, 12 Bandery str.
Writing – Review & Editing
Department of Chemical Technology and Plastics Processing
References

[1] Urraca, J., Cortés-Llanos, B., Aroca, C., de la Presa, P., & Moreno-Bondi, M. (2018). Magnetic field induced polymerization of molecularly imprinted polymers. The Journal of Physical Chemistry C, 122. DOI: 10.1021/acs.jpcc.7b12804

[2] Chiriac, A. P., & Simionescu, C. I. (2000). Magnetic field polymerisation. Progress in Polymer Science, 25(2), 219–258. DOI: 10.1016/S0079-6700(99)00037-4

[3] Stamm, M. (2008). Polymer surfaces and interfaces: Characterization, modification and applications. Springer. ISBN: 978-3-540-73864-0

[4] Skorokhoda, V., Semenyuk, N., Melnyk, Y., Dzjaman, I., & Suberlyak, O. (2016). The bactericidal hydrogel materials and soft contact lenses on their bases. Visnyk NU "LP", Chemistry, technology of reagents and their application, 841, 428–432.

[5] Suberlyak, O., & Skorokhoda, V. (2009). Effect of magnetic field on the structure formation and properties of HEMA/PVP copolymers. Engineering of Biomaterials, 12(86), 2–4. Retrieved from https://yadda.icm.edu.pl