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7. Neimash VB, Kupianskyi HD, Olkhovyk IV et al (2017) Physical properties of radiationcrosslinked polyvinyl alcohol–polyethylene glycol hydrogels from the viewpoint of their
application as medical dressings. Ukr J Phys 62(5):402–412
8. Onanko YA, Prodayvoda GT, Vyzhva SA et al (2011) Automated system of treatment of
ultrasound longitudinal and transversal velocities measuring. Metallofiz Noveishie Tekhnol
33(13):529–533
9. Hamill W (1969) Model for the radiolysis of water. J Phys Chem 73(5):1341–1347
10. Alfayyadha AAM, Lotfyc S, Basfara AA et al (2017) Influences of poly (vinyl alcohol)
molecular weight and carbon nanotubes on radiation crosslinking shape memory polymers.
Prog Nat Sci Mat Int 27:316–325
11. Mondino AV, González ME, Romero GR et al (1999) Physical properties of gamma irradiated
poly(vinyl alcohol) hydrogel preparations. Radiat Phys Chem 55(5–6):723–726
12. Kutsevol NV, Zheltonozhskaya TB, Demchenko OV et al (2004) Effect of the structure of
poly(vinyl alcohol)-graft-polyacrylamide copolymers on their thermooxidative stability. Polym
Sci Ser A 46(5):518–525
13. Gilmanl JW, VanderHart DL, Kashiwagi T (1994) Thermal decomposition chemistry of
poly(vinyl alcohol). Proc ACS Symposium Fire and Polymers American Chemical Society.
Washington, DC, USA 599(2):161–185
14. Cullis CF, Hirschler MM (1981) The combustion of organic polymers. Clarendon Press,
Oxford, pp 117–119
15. Anders H, Zimmerman H (1987) A comparison of the thermal degradation behaviors of
poly(vinyl acetate), poly(vinyl alcohol) and poly(vinyl chloride). Polym Degr Stab 18:111–
122
16. Wilkers CE (ed.) (2005) PVC Handbook. Hanser, Munich
17. Guirguis OW, Manal Moselhey TH (2012) Thermal and structural studies of poly (vinyl
alcohol) and hydroxypropyl cellulose blends. Nat Sci 4(1):57–67
O. Nadtoka et al.
7. Neimash VB, Kupianskyi HD, Olkhovyk IV et al (2017) Physical properties of radiationcrosslinked polyvinyl alcohol–polyethylene glycol hydrogels from the viewpoint of their
application as medical dressings. Ukr J Phys 62(5):402–412
8. Onanko YA, Prodayvoda GT, Vyzhva SA et al (2011) Automated system of treatment of
ultrasound longitudinal and transversal velocities measuring. Metallofiz Noveishie Tekhnol
33(13):529–533
9. Hamill W (1969) Model for the radiolysis of water. J Phys Chem 73(5):1341–1347
10. Alfayyadha AAM, Lotfyc S, Basfara AA et al (2017) Influences of poly (vinyl alcohol)
molecular weight and carbon nanotubes on radiation crosslinking shape memory polymers.
Prog Nat Sci Mat Int 27:316–325
11. Mondino AV, González ME, Romero GR et al (1999) Physical properties of gamma irradiated
poly(vinyl alcohol) hydrogel preparations. Radiat Phys Chem 55(5–6):723–726
12. Kutsevol NV, Zheltonozhskaya TB, Demchenko OV et al (2004) Effect of the structure of
poly(vinyl alcohol)-graft-polyacrylamide copolymers on their thermooxidative stability. Polym
Sci Ser A 46(5):518–525
13. Gilmanl JW, VanderHart DL, Kashiwagi T (1994) Thermal decomposition chemistry of
poly(vinyl alcohol). Proc ACS Symposium Fire and Polymers American Chemical Society.
Washington, DC, USA 599(2):161–185
14. Cullis CF, Hirschler MM (1981) The combustion of organic polymers. Clarendon Press,
Oxford, pp 117–119
15. Anders H, Zimmerman H (1987) A comparison of the thermal degradation behaviors of
poly(vinyl acetate), poly(vinyl alcohol) and poly(vinyl chloride). Polym Degr Stab 18:111–
122
16. Wilkers CE (ed.) (2005) PVC Handbook. Hanser, Munich
17. Guirguis OW, Manal Moselhey TH (2012) Thermal and structural studies of poly (vinyl
alcohol) and hydroxypropyl cellulose blends. Nat Sci 4(1):57–67
