107
Views
2
CrossRef citations to date
0
Altmetric
Research Article

Quality of Cotton and cotton/elastane Single Jersey Knitted Fabrics before and after Softening and in Situ Synthesis of Cu-based Nanoparticles

ORCID Icon, ORCID Icon, ORCID Icon, ORCID Icon, ORCID Icon, ORCID Icon & show all
Pages 15139-15150 | Published online: 19 May 2022

References

  • Abdel-Fattah, S. H., and E. M. El-Khatib. 2007. Improvement of pilling properties of polyester/wool blended fabrics. Journal of Applied Sciences Research 3 (10):1206–09. http://www.aensiweb.com/old/jasr/jasr/2007/1206-1209.pdf.
  • Ali, M., M. Zeeshan, S. Ahmed, B. Qadir, Y. Nawab, A. S. Anjum, and R. Riaz. 2018. Development and comfort characterization of 2D-woven auxetic fabric for wearable and medical textile applications. Clothing and Textiles Research Journal 36 (3):199–214. doi:10.1177/0887302x18768048.
  • Asanovic, K. A., D. D. Cerovic, M. M. Kostic, S. B. Maletic, and A. M. Ivanovska. 2021. Electro-physical properties of woven clothing fabrics before and after abrasion. Journal of Natural Fibers:1–12. Advance online publication. doi:10.1080/15440478.2021.1921659.
  • Cao, L., W. Lu, A. Mat, K. Nishinari, and Y. Fang. 2020. Egg-box model-based gelation of alginate and pectin: A review. Carbohydrate Polymers 242:116389. Article ID. doi:10.1016/j.carbpol.2020.116389.
  • Čuk, N., M. Šala, and M. Gorjanc. 2021. Development of antibacterial and UV protective cotton fabrics using plant food waste and alien invasive plant extracts as reducing agents for the in-situ synthesis of silver nanoparticles. Cellulose 28 (5):3215–33. doi:10.1007/s10570-021-03715-y.
  • Din, I. M., F. Arshad, Z. Hussain, and M. Mukhtar. 2017. Green adeptness in the synthesis and stabilization of copper nanoparticles: Catalytic, antibacterial, cytotoxicity, and antioxidant activities. Nanoscale Research Letters 12(1):638. Article ID. doi:10.1186/s11671-017-2399-8.
  • Duru, S. C., and U. K. Şahin. 2020. Effects of yarn type, process history, softener type and concentration on wicking and drying properties of cotton plain knitted fabrics. Journal of the Textile Institute 111 (8):1166–75. doi:10.1080/00405000.2019.1689773.
  • Ermini, M. L., and V. Voliani. 2021. Antimicrobial nano-agents: The copper age. ACS NANO 15 (4):6008–29. doi:10.1021/acsnano.0c10756.
  • Gun, A. D., and C. N. Kuyucak. 2021. Performance properties of plain knitted fabrics made from open end recycled acrylic yarn with the effects of covered and PBT elastic yarns. Fibers and Polymers Advance online publication. doi:10.1007/s12221-021-0329-y.
  • Haji, M. М. A. 2013. Physical and mechanical properties of cotton/spandex fabrics. Accessed November 17, 2021. https://ptj.com.pk/Web-2013/01-2013/PDF-January-2013/Apparel-and-Knitwear-Haji.pdf.
  • Hasan, K. M. F., H. Wang, S. Mahmud, M. A. Jahid, M. Islam, W. Jin, and C. Genyang. 2020. Colorful and antibacterial nylon fabric via in-situ biosynthesis of chitosan mediated nanosilver. Journal of Materials Research and Technology 9:16135–45. doi:10.1016/j.jmrt.2020.11.056.
  • Hassan, T., M. Q. Khan, A. Salam, N. Hassan, A. Raza, N. Bukhsh, Z. Javed, and I. S. Kim. 2020. The assessment of finishing properties on the mass per unit area, pilling, bursting strength, and wicking behavior of polyester weft-knitted jersey fabric. Coatings 10 (8):723. Article ID. doi:10.3390/coatings10080723.
  • Herath, C. N. 2021. Bursting strength of core spun cotton/spandex single jersey and 1×1 rib knitted fabrics. Fibers and Polymers 22 (4):1160–69. doi:10.1007/s12221-021-9383-8.
  • Igarashi, T., N. Morita, Y. Okamoto, and K. Nakamura. 2016. Elucidation of softening mechanism in rinse cycle fabric softeners. Part 1: Effect of hydrogen bonding. Journal of Surfactants and Detergents 19:183–92. doi:10.1007/s11743-015-1732-4.
  • Ivanovska, A., K. Asanovic, M. Jankoska, K. Mihajlovski, L. Pavun, and M. Kostic. 2020. Multifunctional jute fabrics obtained by different chemical modifications. Cellulose 27 (8):8485–8502. doi:10.1007/s10570-020-03360-x.
  • Ivanovska, A., D. Cerovic, S. Maletic, I. Jankovic Castvan, K. Asanovic, and M. Kostic. 2020. Influence of the alkali treatment on the sorption and dielectric properties of woven jute fabric. Cellulose 26 (8):5133–46. doi:10.1007/s10570-019-02421-0.
  • Ivanovska, A., M. Reljic, M. Kostic, K. Asanovic, and B. Mangovska. 2021. Air permeability and water vapor resistance of differently finished cotton and cotton/elastane single jersey knitted fabrics. Journal of Natural Fibers:1–13. Advance online publication. doi:10.1080/15440478.2021.1875383.
  • Khandaker, S., M. A. Bhuiyan, M. A. Hannan, M. A. Al Faruque, A. Y. N. Azim, and M. A. Rouf. 2014. Scope of polyester cotton blended single jersey knit fabric finishing without heat setting. International Journal of Scientific Engineering and Technology 3 (6):725–29. https://www.academia.edu/7216247/Scope_of_Polyester_Cotton_Blended_Single_Jersey_Knit_Fabric_Finishing_Without_Heat_Setting.
  • Kramar, A. D., K. A. Asanović, B. M. Obradović, M. M. Kuraica, and M. M. Kostić. 2018. Electrical resistivity of plasma treated viscose and cotton fabrics with incorporated metal ions. Fibers and Polymers 19 (3):571–79. doi:10.1007/s12221-018-7716-z.
  • Rajeshkumar, S., S. Menon, S. V. Kumar, M. M. Tambuwala, H. A. Bakshi, M. Mehta, S. Satija, G. Gupta, D. K. Chellappan, L. Thangavelu, et al. 2019. Antibacterial and antioxidant potential of biosynthesized copper nanoparticles mediated through Cissus arnotiana plant extract. Journal of Photochemistry and Photobiology B: Biology 197:111531. Article ID. doi:10.1016/j.jphotobiol.2019.111531.
  • Rezaie, A. B., M. Montazer, A. Bashiri, and M. M. Rad. 2017. A cleaner route for nanocolouration of wool fabrics via green assembling of cupric oxide nanoparticles along with antibacterial and UV protection properties. Journal of Cleaner Production 166:221–31. doi:10.1016/j.jclepro.2017.08.046.
  • Safdar, F., T. Hussain, A. Nazir, and K. Iqubal. 2014. Improving dimensional stability of cotton knits through resin finishing. Journal of Engineered Fibers and Fabrics 9 (3):28–35. doi:10.1177/155892501400900304.
  • Salopek, I., Z. Skenderi, and J. Geršak. 2007. Istrazivanje dimenzijskih karakteristika pletiva. Tekstil 56 (7):399–406. https://hrcak.srce.hr/file/35876.
  • Sedighi, A., and M. Montazer. 2016. Tunable shaped N-doped CuO nanoparticles on cotton fabric through processing conditions: Synthesis, antibacterial behavior and mechanical properties. Cellulose 23 (3):2229–43. doi:10.1007/s10570-016-0892-3.
  • Shabbir, M., L. J. Rather, and F. Mohammad. 2018. Economically viable UV-protective and antioxidant finishing of wool fabric dyed with Tagetes erecta flower extract: Valorization of marigold. Industrial Crops and Products 119:277–82. doi:10.1016/j.indcrop.2018.04.016.
  • Shahid-ul-Islam, B. S. B., A. Roy, A. Roy, and A. Roy. 2019. Multifunctional finishing of cellulosic fabric via facile, rapid in-situ green synthesis of AgNPs using pomegranate peel extract biomolecules. Sustainable Chemistry and Pharmacy 12:100135. Article ID. doi:10.1016/j.scp.2019.100135.
  • Sitotaw, D. B., and E. K. Gedion. 2020. Performance characteristics of knitted fabrics made from 100% cotton and cotton/elastane blended yarns. Journal of Textile and Apparel, Technology and Management 11 (2):1–13. https://ojs.cnr.ncsu.edu/index.php/JTATM/article/view/14291.
  • Yu, Z., J. Liu, H. He, Y. Wang, Y. Zhao, Q. Lu, Y. Qin, Y. Ke, and Y. Peng. 2021. Green synthesis of silver nanoparticles with black rice (Oryza sativa L.) extract endowing carboxymethyl chitosan modified cotton with high anti-microbial and durable properties. Cellulose 28 (3):1827–42. doi:10.1007/s10570-020-03639-z.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.