Environmental Profile of Nano-finished Textile …
77
30. Pan ZW, Dai ZR, Wang ZL (2001) Nanobelts of semiconducting oxides. Science 291:1947–
1949
31. Tang E, Cheng G, Ma X, Pang X, Zhao Q (2006) Surface modification of zinc oxide
nanoparticle by PMAA and its dispersion in aqueous system. Appl Surf Sci 252:5227–5232
32. Xu T, Xie CS (2003) Tetrapod-like nano-particle ZnO/acrylic resin composite and its multifunction property. Prog Org Coat 46:297–301
33. Vigneshwaran N, Kumar S, Kathe AA, Varadarajan PV, Prasad V (2006) Functional finishing
of cotton fabrics using zinc oxide-soluble starch nanocomposites. Nanotechnology 17:5087–
5095
34. Li Q, Chen SL, Jiang WC (2007) Durability of nano ZnO antibacterial cotton fabric to sweat.
J Appl Polym Sci 103:412–416
35. Wang ZL (2004) Zinc oxide nanostructures: growth, properties and applications. J Phys
Condens Matter 16:829–858
36. Wang ZL (2004) Nanostructures of zinc oxide. J Phys Condens Matter 7(6):26–33
37. Wang ZL (2007) Novel nanostructures of ZnO for nanoscale photonics, optoelectronics,
piezoelectricity, and sensing. Appl Phys A Mater Sci Process 88:7–15
38. Cubillo E, Pecharroman C, Aguilar E, Santaren J, Moya JS (2006) Antibacterial activity of
copper monodispersed nanoparticles into sepiolite. J Mater Sci 41:5208–5212
39. Pape HL, Serena FS, Contini P, Devillers C, Maftah A, Leprat P (2002) Evaluation of the antimicrobial properties of an activated carbon fibre supporting silver using a dynamic method.
Carbon 40:2947–2954
40. Wel Q, Yu L, Wu N, Hong S (2008) Preparation and characterization of copper nanocomposite
textiles. J Ind Text 37(3):275–283
41. Grace AN, Pandian K (2007) Antibacterial efficacy of aminoglycosidic antibiotics protected
gold nanoparticles: a brief study. Colloids Surf A 297:63–70
42. Park SH, Oh SG, Munb JY, Han SS (2006) Loading of gold nanoparticles inside the DPPC
bilayers of liposome and their effects on membrane fluidities. Colloids Surf Biointerfaces
48:112–118
43. Yonezawa T, Kunitake T (1999) Practical preparation of anionic mercapto ligand stabilized
gold nanoparticles and their immobilization. Colloids Surf A 149:193–199
44. Zhang Y, Peng H, Huanga W, Zhou Y, Yan D (2008) Facile preparation and characterization
of highly antimicrobial colloid Ag or Au nanoparticles. J Colloid Interface Sci 325:371–376
45. Jimenez G, Ogata N, Kawai H, Ogihara T (1997) Structure and thermal/mechanical properties
of poly(γ-caprolactam)–clay blend. J Appl Polym Sci 64:2211–2220
46. Kodgire P, Kalgaonkar R, Hambir S, Bulakh N, Jog JP (2001) PP/clay nanocomposites: effect
of clay treatment on morphology and dynamic mechanical properties. J Appl Polym Sci
81:1786–1792
47. Mlynarcikova Z, Brsig E, Legen J, Marcincin A, Alexy P (2005) Influence of the composition
of polypropylene/organoclay nanocomposite fiber on their tensile strength. J Macromol Sci
Part A Pure Appl Chem 42(5):543–554
48. Pavlikova S, Thomann R, Reichert P, Mulhaupt R, Marcincin A, Borsig E (2003) Fiber
spinning from poly(propylene)-organoclay nanocomposite. J Appl Polym Sci 89(3):604–611
49. Razafimahefa L, Chlebicki S, Vroman I, Devaux E (2005) Effect of nanoclay on the dyeing
ability of PA6 nanocomposite fibers. Dyes Pigm 66(1):55–60
50. Williams LB, Holland M, Eberl DD, Brunet T, De Courrsou LB (2004) Killer clays! Natural
antibacterial clay minerals. Miner Soc Bull 139:3–8
51. Haydel SE, Remenih CM, Williams LB (2008) Broad spectrum in vitro antibacterial activities
of clay minerals against antibiotic susceptible and antibiotic-resistant bacterial pathogens. J
Antimicrob Chemother 61(2):353–361
52. Seckin T, Onal Y, Yesilada O, Gultek A (1997) Preparation and characterization of a clay–
polyvinylpyridinium matrix for the removal of bacterial cells from water. J Mater Sci 32:5993–
5999
53. Hu CH, Xu ZR, Xia MS (2005) Antibacterial effect of Cu 2+ -exchanged montmorillonite on
aeromonashydrophlia and discussion on its mechanism. Vet Microbiol 109:83–88
77
30. Pan ZW, Dai ZR, Wang ZL (2001) Nanobelts of semiconducting oxides. Science 291:1947–
1949
31. Tang E, Cheng G, Ma X, Pang X, Zhao Q (2006) Surface modification of zinc oxide
nanoparticle by PMAA and its dispersion in aqueous system. Appl Surf Sci 252:5227–5232
32. Xu T, Xie CS (2003) Tetrapod-like nano-particle ZnO/acrylic resin composite and its multifunction property. Prog Org Coat 46:297–301
33. Vigneshwaran N, Kumar S, Kathe AA, Varadarajan PV, Prasad V (2006) Functional finishing
of cotton fabrics using zinc oxide-soluble starch nanocomposites. Nanotechnology 17:5087–
5095
34. Li Q, Chen SL, Jiang WC (2007) Durability of nano ZnO antibacterial cotton fabric to sweat.
J Appl Polym Sci 103:412–416
35. Wang ZL (2004) Zinc oxide nanostructures: growth, properties and applications. J Phys
Condens Matter 16:829–858
36. Wang ZL (2004) Nanostructures of zinc oxide. J Phys Condens Matter 7(6):26–33
37. Wang ZL (2007) Novel nanostructures of ZnO for nanoscale photonics, optoelectronics,
piezoelectricity, and sensing. Appl Phys A Mater Sci Process 88:7–15
38. Cubillo E, Pecharroman C, Aguilar E, Santaren J, Moya JS (2006) Antibacterial activity of
copper monodispersed nanoparticles into sepiolite. J Mater Sci 41:5208–5212
39. Pape HL, Serena FS, Contini P, Devillers C, Maftah A, Leprat P (2002) Evaluation of the antimicrobial properties of an activated carbon fibre supporting silver using a dynamic method.
Carbon 40:2947–2954
40. Wel Q, Yu L, Wu N, Hong S (2008) Preparation and characterization of copper nanocomposite
textiles. J Ind Text 37(3):275–283
41. Grace AN, Pandian K (2007) Antibacterial efficacy of aminoglycosidic antibiotics protected
gold nanoparticles: a brief study. Colloids Surf A 297:63–70
42. Park SH, Oh SG, Munb JY, Han SS (2006) Loading of gold nanoparticles inside the DPPC
bilayers of liposome and their effects on membrane fluidities. Colloids Surf Biointerfaces
48:112–118
43. Yonezawa T, Kunitake T (1999) Practical preparation of anionic mercapto ligand stabilized
gold nanoparticles and their immobilization. Colloids Surf A 149:193–199
44. Zhang Y, Peng H, Huanga W, Zhou Y, Yan D (2008) Facile preparation and characterization
of highly antimicrobial colloid Ag or Au nanoparticles. J Colloid Interface Sci 325:371–376
45. Jimenez G, Ogata N, Kawai H, Ogihara T (1997) Structure and thermal/mechanical properties
of poly(γ-caprolactam)–clay blend. J Appl Polym Sci 64:2211–2220
46. Kodgire P, Kalgaonkar R, Hambir S, Bulakh N, Jog JP (2001) PP/clay nanocomposites: effect
of clay treatment on morphology and dynamic mechanical properties. J Appl Polym Sci
81:1786–1792
47. Mlynarcikova Z, Brsig E, Legen J, Marcincin A, Alexy P (2005) Influence of the composition
of polypropylene/organoclay nanocomposite fiber on their tensile strength. J Macromol Sci
Part A Pure Appl Chem 42(5):543–554
48. Pavlikova S, Thomann R, Reichert P, Mulhaupt R, Marcincin A, Borsig E (2003) Fiber
spinning from poly(propylene)-organoclay nanocomposite. J Appl Polym Sci 89(3):604–611
49. Razafimahefa L, Chlebicki S, Vroman I, Devaux E (2005) Effect of nanoclay on the dyeing
ability of PA6 nanocomposite fibers. Dyes Pigm 66(1):55–60
50. Williams LB, Holland M, Eberl DD, Brunet T, De Courrsou LB (2004) Killer clays! Natural
antibacterial clay minerals. Miner Soc Bull 139:3–8
51. Haydel SE, Remenih CM, Williams LB (2008) Broad spectrum in vitro antibacterial activities
of clay minerals against antibiotic susceptible and antibiotic-resistant bacterial pathogens. J
Antimicrob Chemother 61(2):353–361
52. Seckin T, Onal Y, Yesilada O, Gultek A (1997) Preparation and characterization of a clay–
polyvinylpyridinium matrix for the removal of bacterial cells from water. J Mater Sci 32:5993–
5999
53. Hu CH, Xu ZR, Xia MS (2005) Antibacterial effect of Cu 2+ -exchanged montmorillonite on
aeromonashydrophlia and discussion on its mechanism. Vet Microbiol 109:83–88
