Chattopadhyay d p inamdar m s 2009 studies on the

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Chattopadhyay, D. P., & Inamdar, M. S. (2009). Studies on the properties of chitosan treated cotton fabric. Asian Dyer, 6 (5), 47 53. Chattopadhyay, D. P., & Inamdar, M. S. (2010). Aqueous behaviour of chitosan. International Journal of Polymer Science, 2010 , 1. Chattopadhyay, D., & Inamdar, M. S. (2013). Improvement in properties of cotton fabric through synthesized nano-chitosan application. Indian Journal of Fibres and Textile Research, 38 , 14. Chattopadhyay, D. P., & Patel, B. H. (2009). Improvement in physical and dyeing properties of natural fi bres through pretreatment with silver nanoparticles. Indian Journal of Fibre & Textile Research, 34 , 368. Daoud, W. A., & Xin, J. H. (2004). Low temperature sol-gel processed photocatalytic titania coating. Journal of Sol-Gel Science and Technology, 29 , 25. Daoud, W. A., Xin, J. H., & Zhang, Y.-H. (2005). Surface functionalization of cellulose fi bers with titanium dioxide nanoparticles and their combined bactericidal activities. Surface Science, 599 (1), 69. Dastjerdi, R., Mojtahedi, M., Shoshtari, A., & Khosroshahi, A. (2010). Investigating the production and properties of Ag/TiO2/PP antibacterial nanocomposite fi lament yarns. Journal of the Textile Institute, 101 (3), 204. Dastjerdi, R., Montazer, M., & Shahsavan, S. (2009). A new method to stabilize nanoparticles on textile surfaces. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 345 (3), 202. Debnath, S., & Sengupta, S. (2009). Effect of linear density, twist and blend proportion on some physical properties of jute and hollow polyester blended yarn. Indian Journal of Fibre & Textile Research, 34 (1), 11. Debnath, S., Sengupta, S., & Singh, U. S. (2007a). Properties of jute and hollow-polyester blended bulked yarn. Journal of Institution of Engineers (India) Textile Engineering Divison, 87 (1), 11. 52 N. Gokarneshan et al.
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Debnath, S., Sengupta, S., & Singh, U. S. (2007b). Comparative study on the physical properties of jute, jute-viscose and jute-polyester (hollow) blended yarns. Journal of Institution of Engineers (India) Textile Engineering Divison, 88 (8), 5. Debnath, S., Sengupta, S., & Singh, P. (2011). Annual report 2010-11 (p. 17). Kolkata: NIRJAFT. Dhananjeyan, M., Mielczarski, E., Thampi, K., Buffat, P., Bensimon, M., Kulik, A., et al. (2001). Journal of Physical Chemistry B, 105 , 12046. Du, W.-D., Niu, S.-S., Xu, Y.-L., Xu, Z.-R., & Fan, C.-L. (2009). Antibacterial activity of chitosan tripolyphosphate nanoparticles loaded with various metal ions. Carbohydrate Polymer, 385. Ebrahim, F. F. S., & Mansour, O. S. M. (2013). Using Nanomaterials treatments to improve the performance characteristics of garment groups with special needs. Journal of American Science, 9 (11), 126 131. El-Molla, M. M., El-Khatib, E. M., El-Gammal, M. S., & Abdel-Fattah, S. H. (2011). Development of ecofriendly binders for pigment printing of all types of textile fabrics. Indian Journal of Fibre & Textile Research, 36 (3), 266. El-Sayed, A. A., Dorgham, S. M., & Kantouch, A. (2012). Application of reactive salicylanilide to viscose fabrics as antibacterial and antifungus fi nishing. International Journal of Biological Macromolecules, 50 (1), 273.
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