Islam s shahid m mohammad f 2013b perspectives for

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Islam, S., Shahid, M., & Mohammad, F. (2013b). Perspectives for natural product based agents derived from industrial plants in textile applications A review. Journal of Cleaner Production, 57 , 2 18. Islam, S., Shahid, M., & Mohammad, F. (2014). Future prospects of phytosynthesized transition metal nanoparticles as novel functional agents for textiles. In: A. T. Syv ä j ä rvi (ed.), Advanced materials for agriculture, food, and environmental safety (pp. 265 290). New York: Wiley. Johnston, J. H., Richardson, M. J., & Burridge, K. A. (2008). Gold nanoparticles as colourants in high fashion fabrics and textiles (Vol. 1, pp. 712 715). Joshi, M., Wazed Ali, S., Purwar, R., & Rajendran, S. (2009). Ecofriendly antimicrobial fi nishing of textiles using bioactive agents based on natural products. Indian Journal of Fibre & Textile Research, 34 (3), 295 304. Kale, K. H., Palaskar, S. S., & Kasliwal, P. M. (2012). A novel approach for functionalization of polyester and cotton textiles with continuous online deposition of plasma polymers, 37 (September), 238 244. Kaplan, S., & Okur, A. (2008). The meaning and importance of clothing comfort: A case study for Turkey. Journal of Sensory Studies, 23 (5), 688 706. Kathirvelu, S., D souza, L., & Dhurai, B. (2009). UV protection fi nishing of textiles using ZnO nanoparticles. Indian Journal of Fibre Textile Research , 34 (3), 267 273 Kawabata, A., & Taylor, J. A. (2007). The effect of reactive dyes upon the uptake and antibacterial ef fi cacy of poly(hexamethylene biguanide) on cotton. Part 3: Reduction in the antibacterial ef fi cacy of poly(hexamethylene biguanide) on cotton, dyed with bis(monochlorotriazinyl) reactive dyes. Carbohydrate Polymers, 67 (3), 375 389. Insights into the Functional Finishing of Textile Materials 113
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Khan, M. I., Ahmad, A., Khan, S. A., Yusuf, M., Shahid, M., Manzoor, N., et al. (2011). Assessment of antimicrobial activity of catechu and its dyed substrate. Journal of Cleaner Production, 19 (12), 1385 1394. Khan, S. A., Ahmad, A., Khan, M. I., Yusuf, M., Shahid, M., Manzoor, N., et al. (2012). Antimicrobial activity of wool yarn dyed with Rheum emodi L. (Indian Rhubarb). Dyes and Pigments, 95 (2), 206 214. Krebs, F. C., Miller, S. R., Ferguson, M. L., Labib, M., Rando, R. F., & Wigdahl, B. (2005). Polybiguanides, particularly polyethylene hexamethylene biguanide, have activity against human immunode fi ciency virus type 1. Biomedicine & Pharmacotherapy, 59 (8), 438 445. Li, D., & Sun, G. (2007). Coloration of textiles with self-dispersible carbon black nanoparticles. Dyes and Pigments, 72 (2), 144 149. Lombi, E., Donner, E., Scheckel, K. G., Sekine, R., Lorenz, C., Goetz, N. V. et al. (2014). Silver speciation and release in commercial antimicrobial textiles as in fl uenced by washing. Chemosphere, 111 , 352 358. Meilert, K. T., Laub, D., & Kiwi, J. (2005). Photocatalytic self-cleaning of modi fi ed cotton textiles by TiO 2 clusters attached by chemical spacers. Journal of Molecular Catalysis A: Chemical, 237 , 101 108. Mirjalili, M., Nazarpoor, K., & Karimi, L. (2011). Eco-friendly dyeing of wool using natural dye from weld as co-partner with synthetic dye. Journal of Cleaner Production, 19 (9), 1045 1051.
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