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Preparation of Multifunctional Polyester Fabrics Using Zinc Stannate Nanoparticles


Affiliations
1 Department of Textile and Apparel Engineering, Qaemshahr Branch, Islamic Azad University, Qaemshahr, Iran, Islamic Republic of
 

A novel self-cleaning, antibacterial and ultraviolet-resistant polyester fabric loaded with zinc stannate nanoparticles has been prepared. Zinc stannate nanoparticles have been incorporated onto the surface of polyester fabrics by an in situ sonochemical approach. Synthesis of zinc stannate nanoparticles is carried out along with the alkaline hydrolysis of polyester fabric using sodium hydroxide. The produced novel polyester fabrics are characterized by field emission scanning electron microscope, energy-dispersive X-ray spectroscopy and X-ray diffraction. The self-cleaning property, antibacterial efficiency and ultraviolet protection property of the samples are also studied. The treated polyester fabrics possess significant antibacterial activity and photo-catalytic self-cleaning property by degradation of methylene blue under sunlight irradiation. Also, the coated fabric shows proper UV-blocking activity. Moreover, all properties of the treated fabric with zinc stannate nanoparticle are found superior as compared to the treated sample with zinc oxide nanoparticle.

Keywords

Antibacterial Fabric, Polyester Fabric, Sonochemical Synthesis, Self-Cleaning Fabric, Zinc Stannate Nanoparticle.
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  • Payvandy P, Zohoori S & Bekrani M, Indian J Fibre Text Res, 46(1) (2021) 57.
  • Guo Q, Ma Z, Zhou C, Ren Z & Yang X, Chem Rev, 119 (2019) 11020.
  • Derakhshan SJ, Karimi L, Zohoori S, Davodiroknabadi A & Lessani L, Indian J Fibre Text Res, 43(3) (2018) 344.
  • Aalipourmohammadi M, Davodiroknabadi A & Nazri A, Indian J Fibre Text Res, 45(3) (2020) 286.
  • Zhao Y, Zhang S, Shi R, Waterhouse GI, Tang J & Zhang T, Mater Today, 34 (2020) 78.
  • Tudu BK, Sinhamahapatra A & Kumar A, ACS Omega, 5 (2020) 7850.
  • Aminloo ES & Montazer M, Fiber Polym, 22 (2021) 97.
  • Javed A, Azeem M, Wiener J, Thukkaram M, Saskova J & Mansoor T, Fiber Polym, 22 (2021) 77.
  • Nazari A, Montazer M & Dehghani-Zahedani M, J Indus Eng Chem, 20 (2014) 4207.
  • Joomjarearn P, Achiwawanich S, Setthayanond J & Suwanruji P, Fiber Polym, 21 (2020) 1975.
  • Ischenko V, Polarz S, Grote D, Stavarache V, Fink K & Driess M, Adv Function Mater, 15 (2005) 1945.
  • Ziental D, Czarczynska-Goslinska B, Mlynarczyk D T, Glowacka-Sobotta A, Stanisz B, Goslinski T & Sobotta L, Nanomater, 10 (2020) 387.
  • Nalimova SS, Maksimov AI, Matyushkin LB & Moshnikov VA, Glass Phys Chem, 45 (2019) 251.
  • Tan B, Toman E, Li Y & Wu Y, J Am Chem Soc, 129 (2007) 4162.
  • Ayesha B, Jabeen U, Naeem A, Kasi P, Malghani MNK, Khan SU, Akhtar J & Aamir M, Results Chem, 2 (2020) 100023.
  • Patil MA, Ganbavle VV, Rajpure KY, Deshmukh HP & Mujawar SH, Mater Sci Energ Technol, 3 (2020) 36.
  • Paul S, Basak S & Ali W, ACS Omega, 4 (2019) 21827.
  • Han MS, Park Y & Park CH, Fiber Polym, 17 (2016) 241.
  • Nourbakhsh S, Montazer M & Khandaghabadi Z, J Indus Text, 47 (2018) 1006.
  • Ibrahim NA, Eid BM, Khalil HM & Almetwally AA, Appl Surf Sci, 448 (2018) 95.
  • Hashemizad S, Montazer M & Mireshghi SS, J Text Inst, 108 (2017) 117.
  • Mohammadi M, Karimi L & Mirjalili M, Fiber Polym, 17 (2016) 1371.
  • Ma G, Zou R, Jiang L, Zhang Z, Xue Y, Yu L, Song G, Li W & Hu J, Cryst Eng Comm, 14 (2012) 2172.
  • Geng B, Fang C, Zhan F & Yu N, Small, 4 (2008) 1337.
  • Afshari S & Montazer M, Ultrason Sonochem, 42 (2018) 679.
  • Harifi T & Montazer M, Ultrason Sonochem, 27 (2015) 543.
  • Nazari A, Fiber Polym, 20 (2019) 2503.
  • Baruah S & Dutta J, Sci Technol Adv Mater, 12 (2011) 013004.
  • Zeng J, Xin M, Li K, Wang H, Yan H & Zhang W, J Phys Chem C, 112 (2008) 4159.
  • Sun S & Liang S, J Mater Chem A, 5 (2017) 20534.
  • Jain S, Shah AP & Shimpi NG, Nano-Struct Nano-Objects, 21 (2020) 100410.
  • Sirelkhatim A, Mahmud S, Seeni A, Kaus NHM, Ann LC, Bakhori SKM, Hasan H & Mohamad D, Nano-Micro lett, 7 (2015) 219.
  • Pandimurugan AR & Sankaranarayanan K, Mater Technol, (2021) 1.
  • Jeronsia JE, Joseph LA, Jaculine MM, Vinosha PA & Das SJ, J Taibah Univ Sci, 10 (2016) 601.
  • Dinesh S, Barathan S, Premkumar VK, Sivakumar G & Anandan N, J Mater Sci Mater Electron, 27 (2016) 9668.
  • Javed A, Wiener J, Tamulevičienė A, Tamulevičius T, Lazauskas A, Saskova J & Račkauskas S, Mater, 14 (2021) 3956.
  • Pakdel E, Naebe M, Kashi S, Cai Z, Xie W, Yuen A C Y, Montazer M, Sun L & Wang X, Prog Org Coat, 141 (2020) 105553.
  • El-Naggar M E, Shaarawy S & Hebeish A A, Carbohydr Polym, 181 (2018) 307.

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  • Preparation of Multifunctional Polyester Fabrics Using Zinc Stannate Nanoparticles

Abstract Views: 66  |  PDF Views: 67

Authors

Peiman Valipour
Department of Textile and Apparel Engineering, Qaemshahr Branch, Islamic Azad University, Qaemshahr, Iran, Islamic Republic of

Abstract


A novel self-cleaning, antibacterial and ultraviolet-resistant polyester fabric loaded with zinc stannate nanoparticles has been prepared. Zinc stannate nanoparticles have been incorporated onto the surface of polyester fabrics by an in situ sonochemical approach. Synthesis of zinc stannate nanoparticles is carried out along with the alkaline hydrolysis of polyester fabric using sodium hydroxide. The produced novel polyester fabrics are characterized by field emission scanning electron microscope, energy-dispersive X-ray spectroscopy and X-ray diffraction. The self-cleaning property, antibacterial efficiency and ultraviolet protection property of the samples are also studied. The treated polyester fabrics possess significant antibacterial activity and photo-catalytic self-cleaning property by degradation of methylene blue under sunlight irradiation. Also, the coated fabric shows proper UV-blocking activity. Moreover, all properties of the treated fabric with zinc stannate nanoparticle are found superior as compared to the treated sample with zinc oxide nanoparticle.

Keywords


Antibacterial Fabric, Polyester Fabric, Sonochemical Synthesis, Self-Cleaning Fabric, Zinc Stannate Nanoparticle.

References