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Original Articles

Polypropylene fabric of durable hydrophilic character using plasma-mediated surface coating with keratin

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Pages 3687-3701 | Received 13 Dec 2022, Accepted 23 May 2023, Published online: 06 Jun 2023

References

  • Zebiri A, Doufnoune R, Riahi F, et al. Investigation on the mechanical, thermal, structural and morphological properties of polypropylene/ethylene-vinyl acetate copolymer/graphene oxide nanocomposites: effect of nanofiller surface functionalization and compatibilizers. J Adhes Sci Technol. 2022[cited Jul 20]; 1–35.
  • Mowafi S, Abou Taleb M, El-Sayed H. A review of plasma-assisted treatments of textiles for eco-friendlier water-less processing. Egypt J Chem. 2022;0(0):0–0.
  • Peng X, Zhang Z. Research of polypropylene (PP) decorative board surface painting used for wood product decoration and the paint film adhesion improvement by plasma. J Adhes Sci Technol. 2020;34(3):246–262.
  • Grimm OC, Welsh EA, Pang R, et al. Comparison of oxidative treatments of polypropylene films and fibers to promote zinc oxide nanoparticle adhesion. J Adhes Sci Technol. 2022;36(3):302–316.
  • Xu Z, Wang J, Shen L, et al. Micro porous polypropylene hollow fiber membrane: part I. Surface modification by the graft polymerization of acrylic acid. J Membr Sci. 2002;196(2):221–229.
  • Shahidi S, Moazzenchi B, Ghoranneviss M. Improving the dyeability of polypropylene fabrics using laser technology. J Text Inst. 2013;104(10):1113–1117.
  • Nakasugi N, Himeno M, Kobayashi H, et al. Experimental and mathematical analyses of bio-electrochemical conversion of carbon dioxide to methane. Energy Proc. 2017;114:7133–7140.
  • Putra VGV, Mohamad JN. Response surface methodology and artificial neural network modeling of work of adhesion on plasma-treated polyester–cotton-woven fabrics. J Adhes Sci Technol. 2022[cited Mar 24]; 1–21.
  • Gotoh K, Yasukawa A. Atmospheric pressure plasma modification of polyester fabric for improvement of textile- specific properties. Text Res J. 2011;81(4):368–378.
  • Yaman N, Özdoǧan E, Seventekin N. Atmospheric plasma treatment of polypropylene fabric for improved dyeability with insoluble textile dyestuff. Fibers Polym. 2011;12(1):35–41.
  • Meyer-Plath AA. Grafting of amino and nitrogen groups on polymer by means of plasma functionalization [PhD thesis]. Greifswald: Ernst-Moritz-Arndt University; 2002.
  • Glaser TK, Plohl O, Vesel A, et al. Functionalization of polyethylene (PE) and polypropylene (PP) material using chitosan nanoparticles with incorporated resveratrol as potential active packaging. Mater. 2019;12(13):2118–2137.
  • Abou El-Kheir A, Popescu C, Mowafi S, et al. Physico-chemical properties of keratin-polyvinyl alcohol composite. Fibers Polym. 2015;16(3):537–542.
  • El-Sayed H, Mowafi S, El-Fiky AF, et al. Low temperature water-saving degumming of natural silk using thermophilic protease. Sustain Chem Pharm. 2022;27:100681.
  • Kantouch A, Allam OG, El-Gabry L, et al. Effect of pretreatment of wool fabric with keratin on its dyeability with acid and reactive dyes. Indian J Fibre Text Res. 2012;37(2):157–161.
  • Abou Taleb M, Haggag K, Mostafa TB, et al. Preparation, characterization, and application of the suspended keratin based binder in pigment printing of man-made fibres (Special Edition). Egypt J Chem. 2017;60:79–88.
  • Abou Taleb M, Haggag K, Mostafa TB, et al. A novel approach in pigment printing using nano-keratin based binder. Indian J Fibres Text Res. 2018;43(1):83–91.
  • Abou Taleb M, Mowafi S, El-Sayed H. Utilization of keratin or sericin-based composite in detection of free chlorine in water. J Mol Struct. 2020;1202:127379.
  • Mowafi S, Abou Taleb M, El-Sayed H. Towards analytical stripes for detection of iron III cations in domestic water using proteinic biopolymers. J Clean Prod. 2018;202:45–53.
  • Mowafi S, Abou Taleb M, El-Sayed H. Nozzles-less electro-spun nano-fibers for remediation of textile wastewater. Nano Sci Technol Int J. 2022;13(1):67–84.
  • Vineis C, Cruz Maya I, Mowafi S, et al. Synergetic effect of sericin and keratin in gelatin based nanofibers for in-vitro application. Int J Biol Macromol. 2021;190:375–381.
  • Gomaa SK, Zaki RA, Wahba MI, et al. Green method for improving performance attributes of wool fibres using immobilized proteolytic enzyme. 3 Biotech. 2022;12(10):254–269.
  • Agency for Toxic Substances and Disease Registry. 2017. Toxological profile for gluterdialdhyde. Atlanta (GA): U.S. Department of Health and Human Services, Public Health Service.
  • Chilakamarry C, Mahmood S, Saffe SM, et al. Extraction and application of keratin from natural resources: a review. 3 Biotech. 2021;11(5):220–232.
  • Fukuda M, Ueda M, Emoto A, et al. Investigation of the moisture adsorptivity of polar and hydrophilic groups in wool keratin by its chemical modifications. Sen-i Gakkaishi. 1990;46(10):415–432.
  • Prabowo I, Pratama JN, Chalid M. The effect of modified ijuk fibers to crystallinity of polypropylene composite. IOP Conf Ser Mater Sci Eng. 2017;223:012020.
  • Ma WX, Li YG, Pu C, et al. Immobilization of functional biomolecules onto polypropylene fabric using plasma pre-treatment. J Eng Fibers Fabr. 2020;15:1–10.
  • Abou Taleb M, Mowafi S, Vineis C, et al. Effect of alkali metals and alkaline earth metals hydroxides on the structure of wool fibres. J Nat Fibres. 2022;19(9):3351–3364.
  • Wang Z, Liu H, Zhou K, et al. Effect of surface oxygen/nitrogen groups on hydrogen chloride removal using modified viscose based activated carbon fibers. RSC Adv. 2015;5(105):86006–86012.
  • Siow KS, Britcher L, Kumar S, et al. Plasma methods for the generation of chemically reactive surfaces for biomolecule immobilization and cell colonization – a review. Plasma Process Polym. 2006;3(6-7):392–418.
  • Cheng X, Tan Y, Zheng W, et al. Study on properties of soy protein adhesive enhanced by halloysite nanotubes. J Adhes Sci Technol. 2022 [cited Jul 27]; 1–12.
  • Abd Jelil R. A review of low-temperature plasma of textile materials. J Mater Sci. 2015;50(18):5913–5943.
  • Abou Taleb M, Hussien A, El-Fiky A, et al. Preparation of fatty acid-amino diol condensate and its utilization in improving comfort characteristics of PAN fabrics. Heliyon. 2022;8(6):e09741.
  • Gotoh K, Nagai Y, Yonehara Y, et al. Surface hydrophilization of two polyester films by atmospheric-pressure plasma and ultraviolet excimer light exposures. J Adhes Sci Technol. 2015;29(6):473–486.
  • Xu L, Zhang X, Yang K, et al. Durable super amphiphobic cotton fabrics with improved ultraviolet radiation resistance and photocatalysis. J Adhes Sci Technol. 2022;36(20):2176–2198.

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