166
S. Riaz and M. Ashraf
112. Hebeish AA, Abdelhady MM, Youssef AM (2013) TiO 2 nanowire and TiO 2 nanowire doped
Ag-PVP nanocomposite for antimicrobial and self-cleaning cotton textile. Carbohydr Polym
91(2):549–559
113. Shi L, Zhao Y, Zhang X, Su H, Tan T (2008) Antibacterial and anti-mildew behavior of
chitosan/nano-TiO 2 composite emulsion. Korean J Chem Eng 25(6):1434–1438
114. Reddy KM, Feris K, Bell J, Wingett DG, Hanley C, Punnoose A (2007) Selective toxicity of zinc oxide nanoparticles to prokaryotic and eukaryotic systems. Appl Phys Lett
90(21):2139021–2139023
115. Raghupathi KR, Koodali RT, Manna AC (2011) Size-dependent bacterial growth inhibition
and mechanism of antibacterial activity of zinc oxide nanoparticles. Langmuir 27(7):4020–
4028
116. Zhang L, Jiang Y, Ding Y, Daskalakis N, Jeuken L, Povey M, O’Neill AJ, York DW (2010)
Mechanistic investigation into antibacterial behaviour of suspensions of ZnO nanoparticles
against E. coli. J Nanoparticle Res 12(5):1625–1636
117. Ashraf M, Dumont F, Campagne C, Champagne P, Perwuelz A, Leriche A, Chihib N-E (2014)
Development of antibacterial polyester fabric by growth of ZnO nanorods. J Eng Fiber Fabr
9(1):15–22
118. Hatamie A, Khan A, Golabi M, Turner APF, Beni V, Mak WC, Sadollahkhani A, Alnoor
H, Zargar B, Bano S, Nur O, Willander M (2015) Zinc oxide nanostructure-modified textile
and its application to biosensing, photocatalysis, and as antibacterial material. Langmuir
31(39):10913–10921
119. Agrawal DP (2002) Medicinal properties of neem: new findings, pp 1–5
120. Mao LMJW (2008) Durable freshness through antimicrobial finishes. Ext Mag 30(4):13–16
121. AbdElhady MM (2012) Preparation and characterization of chitosan/zinc oxide nanoparticles
for imparting antimicrobial and UV protection to cotton fabric. Int J Carbohydr Chem 2012:1–
6
122. Shafei AE, Abou-Okeil A (2011) ZnO/carboxymethyl chitosan bionano-composite to impart
antibacterial and UV protection for cotton fabric. Carbohydr Polym 83(2):920–925
123. Petkova P, Francesko A, Fernandes MM, Mendoza E, Perelshtein I, Gedanken A, Tzanov T
(2014) Sonochemical coating of textiles with hybrid ZnO/Chitosan antimicrobial nanoparticles. ACS Appl Mater Interfaces 6(2):1164–1172
124. Bu¸ sil˘ a M, Mu¸ sat V, Textor T, Mahltig B (2015) Synthesis and characterization of antimicrobial textile finishing based on Ag:ZnO nanoparticles/Chitosan biocomposites. RSC Adv
5(28):21562–21571
125. Alviano D, Alviano C (2009) Plant extracts: search for new alternatives to treat microbial
diseases. Curr Pharm Biotechnol 10(1):106–121
126. Cai Y, Luo Q, Sun M, Corke H (2004) Antioxidant activity and phenolic compounds of 112
traditional Chinese medicinal plants associated with anticancer. Life Sci 74(17):2157–2184
127. Handique PJ (2013) Antibacterial properties of leaf extracts of Strobilanthes cusia (Nees)
Kuntze, a rare ethno-medicinal plant of Manipur, India. Int J PharmTech Res 5(3):1281–1285
128. Shelton RM (1991) Aloe vera: its chemical and therapeutic properties. Int J Dermatol
30(10):679–683
129. Day MJ (2008) Immunomodulatory therapy. In: Small animal clinical pharmacology. W.B.
Saunders, pp 270–286
130. Ibrahim W, Sarwar Z, Abid S, Munir U, Azeem A (2017) Aloe vera leaf gel extract for
antibacterial and softness properties of cotton. J Text Sci Eng 07(03):1–6
131. Ammayappan L, Jeyakodi Moses J (2009) Study of antimicrobial activity of aloe vera,
Chitosan, and curcumin on cotton, wool, and rabbit hair. Fibers Polym 10(2):161–166
132. Vastrad JV, Byadgi SA (2018) Eco-friendly antimicrobial finishing of cotton fabric using plant
extracts. Int J Curr Microbiol Appl Sci 7(2):284–292
133. Ayyoob M, Khurshid MF, Asad M, Shah SNH (2015) Assessment of eco-friendly natural
antimicrobial textile finish extracted from aloe vera and Neem plants. Fibres Text East Eur
23(6):120–123
S. Riaz and M. Ashraf
112. Hebeish AA, Abdelhady MM, Youssef AM (2013) TiO 2 nanowire and TiO 2 nanowire doped
Ag-PVP nanocomposite for antimicrobial and self-cleaning cotton textile. Carbohydr Polym
91(2):549–559
113. Shi L, Zhao Y, Zhang X, Su H, Tan T (2008) Antibacterial and anti-mildew behavior of
chitosan/nano-TiO 2 composite emulsion. Korean J Chem Eng 25(6):1434–1438
114. Reddy KM, Feris K, Bell J, Wingett DG, Hanley C, Punnoose A (2007) Selective toxicity of zinc oxide nanoparticles to prokaryotic and eukaryotic systems. Appl Phys Lett
90(21):2139021–2139023
115. Raghupathi KR, Koodali RT, Manna AC (2011) Size-dependent bacterial growth inhibition
and mechanism of antibacterial activity of zinc oxide nanoparticles. Langmuir 27(7):4020–
4028
116. Zhang L, Jiang Y, Ding Y, Daskalakis N, Jeuken L, Povey M, O’Neill AJ, York DW (2010)
Mechanistic investigation into antibacterial behaviour of suspensions of ZnO nanoparticles
against E. coli. J Nanoparticle Res 12(5):1625–1636
117. Ashraf M, Dumont F, Campagne C, Champagne P, Perwuelz A, Leriche A, Chihib N-E (2014)
Development of antibacterial polyester fabric by growth of ZnO nanorods. J Eng Fiber Fabr
9(1):15–22
118. Hatamie A, Khan A, Golabi M, Turner APF, Beni V, Mak WC, Sadollahkhani A, Alnoor
H, Zargar B, Bano S, Nur O, Willander M (2015) Zinc oxide nanostructure-modified textile
and its application to biosensing, photocatalysis, and as antibacterial material. Langmuir
31(39):10913–10921
119. Agrawal DP (2002) Medicinal properties of neem: new findings, pp 1–5
120. Mao LMJW (2008) Durable freshness through antimicrobial finishes. Ext Mag 30(4):13–16
121. AbdElhady MM (2012) Preparation and characterization of chitosan/zinc oxide nanoparticles
for imparting antimicrobial and UV protection to cotton fabric. Int J Carbohydr Chem 2012:1–
6
122. Shafei AE, Abou-Okeil A (2011) ZnO/carboxymethyl chitosan bionano-composite to impart
antibacterial and UV protection for cotton fabric. Carbohydr Polym 83(2):920–925
123. Petkova P, Francesko A, Fernandes MM, Mendoza E, Perelshtein I, Gedanken A, Tzanov T
(2014) Sonochemical coating of textiles with hybrid ZnO/Chitosan antimicrobial nanoparticles. ACS Appl Mater Interfaces 6(2):1164–1172
124. Bu¸ sil˘ a M, Mu¸ sat V, Textor T, Mahltig B (2015) Synthesis and characterization of antimicrobial textile finishing based on Ag:ZnO nanoparticles/Chitosan biocomposites. RSC Adv
5(28):21562–21571
125. Alviano D, Alviano C (2009) Plant extracts: search for new alternatives to treat microbial
diseases. Curr Pharm Biotechnol 10(1):106–121
126. Cai Y, Luo Q, Sun M, Corke H (2004) Antioxidant activity and phenolic compounds of 112
traditional Chinese medicinal plants associated with anticancer. Life Sci 74(17):2157–2184
127. Handique PJ (2013) Antibacterial properties of leaf extracts of Strobilanthes cusia (Nees)
Kuntze, a rare ethno-medicinal plant of Manipur, India. Int J PharmTech Res 5(3):1281–1285
128. Shelton RM (1991) Aloe vera: its chemical and therapeutic properties. Int J Dermatol
30(10):679–683
129. Day MJ (2008) Immunomodulatory therapy. In: Small animal clinical pharmacology. W.B.
Saunders, pp 270–286
130. Ibrahim W, Sarwar Z, Abid S, Munir U, Azeem A (2017) Aloe vera leaf gel extract for
antibacterial and softness properties of cotton. J Text Sci Eng 07(03):1–6
131. Ammayappan L, Jeyakodi Moses J (2009) Study of antimicrobial activity of aloe vera,
Chitosan, and curcumin on cotton, wool, and rabbit hair. Fibers Polym 10(2):161–166
132. Vastrad JV, Byadgi SA (2018) Eco-friendly antimicrobial finishing of cotton fabric using plant
extracts. Int J Curr Microbiol Appl Sci 7(2):284–292
133. Ayyoob M, Khurshid MF, Asad M, Shah SNH (2015) Assessment of eco-friendly natural
antimicrobial textile finish extracted from aloe vera and Neem plants. Fibres Text East Eur
23(6):120–123
