MORPHOLOGY OF POLYACRYLAMIDE-BASED NANOFIBROUS NONWOVEN POLYMER MATERIALS
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Using an electrospinning setup, optimal conditions were selected for obtaining a nanofibrous nonwoven polymer material by adding
various amounts of fibroin to a 4 wt.% polyacrylamide solution. According to these conditions, a constant voltage of 25 kV was
applied to the spinneret (Ø < 1 mm) mounted on the syringe containing the solution, which served as the anode. Under the applied
electric field, nanofiber formation was carried out at a distance of 12–15 cm between the spinneret and the collector (cathode)
1. Chjen-Ming Xuan, Y.Z. Chjan, M. Kotakl. S.Ramakrishna. A riview on polymer nanofibers by electrospinning and their
applications in nanocomposites // Composites Science and Technology, 2003, V. 63. P. 2223-2253.
2. Hasan M.Ibrohim, Anke Klinger. A review on electrospun polymeric nanofibers: Production parameters and potential
applications // Polymer TestinG 2020, V-90, P-106647.
3. Abbas Rahdar, M.Diez-Pascual. Curcumin Sustained Release with a Hybrid Chitosan-Silk Fibroin Nanofibers Containing
Silver Nanoparticles as a Novel Highly Efficient Antibacterial Wound Dressing // Nanomaterials 2022, 12(19), 3426.
4. Журавлева И.И., Акопьян В.А. Высокомолекулярные соединения // Изд. «Самарский университет» . Самара 2014.
526 с.
5. Байбурдов Т.А., Шиповская А.Б. Синтез, химические и физико-химические свойства полимеров акриламида
//СарГУ. имени Н.Г.Чернышевского . -Саратов, 2014.- 67 с.
6. Khakkulov J., Temirov Z. Electrochemical formation of polyacrylamide-sulfur composite coatings on titanium surfaces //
Results in Optics 2025-05 | Journal article DOI:10.1016/j.rio.2025.100804 Part of ISSN: 2666-9501
7. Magoshi J., Magoshi Y., Becker M., Nakamura S. Fiber formation and crystalization of silk // The 9-th Internet. Wool Textile
Research Conference: Abstract.- Tsukuba ( Japan0, 1995.-P. 323-330.
8. J. M. Khakkulov, Z. Sh. Temirov, B. M. Matyakubov, and A. P. Sultanov, Formation of Layered Nanofibric Materials and
Composite Coatings, Mod. Phys. Lett. B 38, 2450175 (2024).
9. A. A. Kholmuminov, B. M. Matyakubov and T. T. Rakhmonov, Chem. Mater. Sci. Res.J. 3(2) (2021) 15, doi:
10.51594/cmsrj.v3i2.216.
10. K. Yang, X. Chu, X. Zhang, X. Li, J. Zheng, S. Li, N. Li, T. A. Sherazi and S. Zhang, J. Membr. Sci. 603 (15) (2020) 118025,
doi: 10.1021/acsaem.9b00674.
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