179
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Graphene Functionalized Cotton Nonwoven for Thermotherapy

&
Pages 12883-12895 | Published online: 10 Jun 2022

References

  • Afroj, S., S. Tan, A. M. Abdelkader, K. S. Novoselov, and N. Karim. 2020. Highly conductive, scalable, and machine washable graphene‐based E‐textiles for multifunctional wearable electronic applications. Advanced Functional Materials 30 (23):2000293. doi:10.1002/adfm.202000293.
  • Cataldi, P., L. Ceseracciu, A. Athanassiou, and I. S. Bayer. 2017. Healable cotton–graphene nanocomposite conductor for wearable electronics. ACS Applied Materials & Interfaces 9 (16):13825–30. doi:10.1021/acsami.7b02326.
  • Chatterjee, A., M. Nivas Kumar, and S. Maity. 2017. Influence of graphene oxide concentration and dipping cycles on electrical conductivity of coated cotton textiles. The Journal of the Textile Institute 108 (11):1910–16. doi:10.1080/00405000.2017.1300209.
  • Emiru, T. F., and D. W. Ayele. 2017. Controlled synthesis, characterization and reduction of graphene oxide: A convenient method for large scale production. Egyptian Journal of Basic and Applied Sciences 4 (1):74–79. doi:10.1016/j.ejbas.2016.11.002.
  • Gamon, J., D. Giaume, G. Lefèvre, T. Le Mercier, and P. Barboux. 2017. The effect of organic additives on the intergranular conductivity of Al-doped Zno. RSC Advances 7 (60):38019–27. doi:10.1039/C7RA02975F.
  • Jain, V. K., and A. Chatterjee. 2021a. Influence of fibre type and dipping cycle on graphene adsorption and electrical conductivity of fibres. Indian Journal of Fibre and Textile Research 46:149–57. http://nopr.niscair.res.in/handle/123456789/57641.
  • Jain, V. K., and A. Chatterjee. 2021b. December 24. Graphene coated cotton nonwoven for electroconductive and UV protection applications. Journal of Industrial Textiles. 152808372110592. doi:10.1177/15280837211059202.
  • Johra, F. T., J.-W. Lee, and W.-G. Jung. 2014. Facile and safe graphene preparation on solution based platform. Journal of Industrial and Engineering Chemistry 20 (5):2883–87. doi:10.1016/j.jiec.2013.11.022.
  • Karimi, L., M. E. Yazdanshenas, R. Khajavi, A. Rashidi, and M. Mirjalili. 2016. Functional finishing of cotton fabrics using graphene oxide nanosheets decorated with titanium dioxide nanoparticles. Journal of the Textile Institute 107 (9):1122–34. doi:10.1080/00405000.2015.1093311.
  • Kim, H., S. Lee, and H. Kim. 2019. Electrical heating performance of electro-conductive para-aramid knit manufactured by dip-coating in a graphene/waterborne polyurethane composite. Scientific Reports 9 (1):1511. doi:10.1038/s41598-018-37455-0.
  • Kim, H., and S. Lee. 2021. Effect of relative humidity condition on electrical heating textile coated with graphene-based on cotton fabric. Fibers and Polymers 22 (1):276–84. doi:10.1007/s12221-021-9820-8.
  • Kongahge, D., J. Foroughi, S. Gambhir, G. M. Spinks, and G. G. Wallace. 2016. Fabrication of a graphene coated nonwoven textile for industrial applications. RSC Advances 6 (77):73203–09. doi:10.1039/C6RA15190F.
  • Lin, Y.-F., D.-H. Lin, M.-H. Jan, C.-H. J. Lin, and C.-K. Cheng. 2014. Orthopedic physical therapy. In Comprehensive biomedical physics, ed. A. Brahme, 379–400. Oxford: Elsevier. doi:10.1016/B978-0-444-53632-7.01024-8.
  • Liu, S., T. H. Zeng, M. Hofmann, E. Burcombe, J. Wei, R. Jiang, J. Kong, and Y. Chen. 2011. Antibacterial activity of graphite, graphite oxide, graphene oxide, and reduced graphene oxide: Membrane and oxidative stress. ACS Nano 5 (9):6971–80. doi:10.1021/nn202451x.
  • Maity, S., A. Chatterjee, B. Singh, and A. Pal Singh. 2014. Polypyrrole based electro-conductive textiles for heat generation. Journal of the Textile Institute 105 (8):887–93. doi:10.1080/00405000.2013.861149.
  • Malhotra, U., S. Maity, and A. Chatterjee. 2015. Polypyrrole-silk electro-conductive composite fabric by in situ chemical polymerization. Journal of Applied Polymer Science 132 (4):1–10. doi:10.1002/app.41336.
  • Malkappa, K., R. Salehiyan, and S. S. Ray. 2020. Supramolecular poly(cyclotriphosphazene) functionalized graphene oxide/polypropylene composites with simultaneously improved thermal stability, flame retardancy, and viscoelastic properties. Macromolecular Materials and Engineering 305 (8):2000207. doi:10.1002/mame.202000207.
  • Marcano, D. C., D. V. Kosynkin, J. M. Berlin, A. Sinitskii, Z. Sun, A. Slesarev, L. B. Alemany, W. Lu, and J. M. Tour. 2010. Improved synthesis of graphene oxide. ACS Nano 4 (8):4806–14. doi:10.1021/nn1006368.
  • Molina, J. 2016. Graphene-based fabrics and their applications: A review. RSC Advances 6 (72):68261–91. doi:10.1039/C6RA12365A.
  • Mukhopadhyay, A., V. K. Midha, and N. C. Ray. 2017. Multi-objective optimization of parametric combination of injected slub yarn for producing knitted and woven fabrics with least abrasive damage. Research Journal of Textile and Apparel 21 (2):111–33. doi:10.1108/RJTA-10-2016-0024.
  • Sahito, I. A., K. C. Sun, A. A. Arbab, M. B. Qadir, and S. H. Jeong. 2015. Integrating high electrical conductivity and photocatalytic activity in cotton fabric by cationizing for enriched coating of negatively charged graphene oxide. Carbohydrate Polymers 130:299–306. doi:10.1016/j.carbpol.2015.05.010.
  • Shateri-Khalilabad, M., and M. E. Yazdanshenas. 2013. Fabricating electroconductive cotton textiles using graphene. Carbohydrate Polymers 96 (1):190–95. doi:10.1016/j.carbpol.2013.03.052.
  • Souri, H., and D. Bhattacharyya. 2018. Highly stretchable multifunctional wearable devices based on conductive cotton and wool fabrics. ACS Applied Materials & Interfaces 10 (24):20845–53. doi:10.1021/acsami.8b04775.
  • Zhu, S., M. Wang, Z. Qiang, J. Song, Y. Wang, Y. Fan, Z. You, Y. Liao, M. Zhu, and C. Ye. 2021. Multi-functional and highly conductive textiles with ultra-high durability through “green” fabrication process. Chemical Engineering Journal 406 (3):127140. doi:10.1016/j.cej.2020.127140.

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.