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Research Article

Optimization of Atmospheric Plasma Treatment Parameters for Hydrophobic Finishing of Silk Using Box Behnken Design

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References

  • Gogoi, D., A. J. Choudhury, J. Chutia, A. R. Pal, N. N. Dass, D. Devi, and D. S. Patil. 2011. Enhancement of hydrophobicity and tensile strength of muga silk fiber by radiofrequency Ar plasma discharge. Applied Surface Science 258 (1):126–35.
  • Hodak, S. K., T. Supasai, B. Paosawatyanyong, K. Kamlangkla, and V. Pavarajarn. 2008. Enhancement of the hydrophobicity of silk fabrics by SF6 plasma. Applied Surface Science 254 (15):4744–49.
  • Iriyama, Y., T. Yasuda, D. L. Cho, and H. Yasuda. 1990. Plasma surface treatment on nylon fabrics by fluorocarbon compounds. Journal of Applied Polymer Science 39 (2):249–64.
  • Montgomery, D. C. 1997. Introduction to factorial designs. Design and analysis of experiments, pp.189-243. New York: John wiley & sons.
  • Samanta, K. K., A. G. Joshi, M. Jassal, and A. K. Agrawal. 2012. Study of hydrophobic finishing of cellulosic substrate using He/1, 3-butadiene plasma at atmospheric pressure. Surface and Coatings Technology 213:65–76.
  • Samanta, K. K., M. Jassal, and A. K. Agrawal. 2009. Improvement in water and oil absorbency of textile substrate by atmospheric pressure cold plasma treatment. Surface and Coatings Technology 203 (10):1336–42.
  • Samanta, K. K., S. Basak, and S. K. Chattopadhyay. 2014. Environment-friendly textile processing using plasma and UV treatment. In Roadmap to sustainable textiles and clothing, edited by Muthu S.S., 161–201. Singapore: Springer.
  • Samanta, K. K., T. N. Gayatri, S. Saxena, S. Basak, S. K. Chattopadhyay, A. Arputharaj, and V. Prasad. 2016. Hydrophobic functionalization of cellulosic substrates using atmospheric pressure plasma. Cellulose Chemistry And Technology 50 (7–8):745–54.
  • Selli, E., C. Riccardi, M. R. Massafra, and B. Marcandalli. 2001. Surface modifications of silk by cold SF6 plasma treatment. Macromolecular Chemistry and Physics 202 (9):1672–78.
  • Suanpoot, P., K. Kueseng, S. Ortmann, R. Kaufmann, C. Umongno, P. Nimmanpipug, D. Boonyawan, and T. Vilaithong. 2008. Surface analysis of hydrophobicity of thai silk treated by SF6 plasma. Surface and Coatings Technology 202 (22–23):5543–49.
  • Teli, M. D., K. K. Samanta, P. Pandit, S. Basak, and S. K. Chattopadhyay. 2015. Low-temperature dyeing of silk fabric using atmospheric pressure helium/nitrogen plasma. Fibers and Polymers 16:11. doi:https://doi.org/10.1007/s12221-015-5166-4.
  • Teli, M. D., P. Pandit, and K. K. Samanta. 2018. Optimization of plasma modification for low-temperature dyeing of silk fabric. In Biopolymers and Biomaterials, edited by Padinjakkara, A., Thankappan, A., Souza Jr, F.G., and Thomas, S., 127–146. Apple Academic Press (Canada & USA) & CRC Press.
  • Wang, Y. 2011. The uniform Si-O coating on cotton fibers by an atmospheric pressure plasma treatment. Journal of Macromolecular Science, Part B 50 (9):1739–46.

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