Recent Advances in Development of Antimicrobial Textiles
163
48. Liang J, Chen Y, Ren X, Wu R, Barnes K, Worley SD, Broughton RM, Cho U, Kocer H,
Huang TS (2007) Fabric treated with antimicrobial N-halamine epoxides. Ind Eng Chem Res
46(20):6425–6429
49. Demir B, Cerkez I, Worley SD, Broughton RM, Huang TS (2015) N-halamine-modified
antimicrobial polypropylene nonwoven fabrics for use against airborne bacteria. ACS Appl
Mater Interfaces 7(3):1752–1757
50. Cheng X, Li R, Du J, Sheng J, Ma K, Ren X, Huang TS (2015) Antimicrobial activity of
hydrophobic cotton coated with N-halamine. Polym Adv Technol 26(1):99–103
51. Xue Y, Xiao H, Zhang Y (2015) Antimicrobial polymeric materials with quaternary
ammonium and phosphonium salts. Int J Mol Sci 16(2):3626–3655
52. Zhu P, Sun G (2004) Antimicrobial finishing of wool fabrics using quaternary ammonium
salts. J Appl Polym Sci 93(3):1037–1041
53. Riaz S, Ashraf M, Hussain T, Hussain MT (2019) Modification of silica nanoparticles
to develop highly durable superhydrophobic and antibacterial cotton fabrics. Cellulose
26(8):5159–5175
54. Aslanidou D, Karapanagiotis I (2018) Superhydrophobic, superoleophobic and antimicrobial
coatings for the protection of silk textiles. Coatings 8(3):101
55. Berendjchi A, Khajavi R, Yazdanshenas ME (2011) Fabrication of superhydrophobic and
antibacterial surface on cotton fabric by doped silica-based sols with nanoparticles of copper.
Nanoscale Res Lett 6(1):594
56. Aiba S (1992) Studies on chitosan: 4. Lysozymic hydrolysis of partially N-acetylated
Chitosans. Int J Macromol 14:225–228
57. Ravi Kumar MNV (2000) A review of chitin and chitosan applications. React Funct Polym
46:1–27
58. Tolimate A, Desrieres J, Rhazia M (2003) Contribution to the preparation of chitins and
chitosans with controlled physico-chemical properties. Polymer (Guildf) 44:7939–7952
59. Goy RC, de Britto D, Assis OBG (2009) A review of the antimicrobial activity of Chitosan.
Polímeros 19(3):241–247
60. Huang KS, Wu WJ, Chen JB, Lian HS (2008) Application of low-molecular-weight chitosan
in durable press finishing. Carbohydr Polym 73(2):254–260
61. Abdel-Halim ES, Abdel-Mohdy FA, Al-Deyab SS, El-Newehy MH (2010) Chitosan and
monochlorotriazinyl-β-cyclodextrin finishes improve antistatic properties of cotton/polyester
blend and polyester fabrics. Carbohydr Polym 82(1):202–208
62. Moses JJ, Venkataraman VK (2016) Study of chemical treated cotton fabric for functional
finishes using chitosan. J Text Apparel Technol Manag 10(1):1–17
63. Zhang Z, Chen L, Ji J, Huang Y, Chen D (2003) Antibacterial properties of cotton fabrics
treated with chitosan. Text Res J 73(12):1103–1106
64. ¸
Sahan G, Demir A (2016) A green application of nano sized Chitosan in textile finishing.
TEKST ˙ IL ve KONFEKS ˙ IYON 26(4):414–420
65. Scacchetti FAP, Pinto E, Soares GMB (2017) Preparation and characterization of cotton fabrics
with antimicrobial properties through the application of chitosan/silver-zeolite film. Procedia
Eng 200:276–282
66. Perelshtein I, Ruderman E, Perkas N, Tzanov T, Beddow J, Joyce E, Mason TJ, Blanes
M, Mollá K, Patlolla A, Frenkel AI, Gedanken A (2013) Chitosan and chitosan-ZnO-based
complex nanoparticles: formation, characterization, and antibacterial activity. J Mater Chem
B 1(14):1968–1976
67. Regös J, Hitz HR (1974) Investigations on the mode of action of triclosan, a broad spectrum
antimicrobial agent. Zentralbl Bakteriol Orig A 226(3):390–401
68. Orhan M, Kut D, Gunesoglu C (2009) Improving the antibacterial activity of cotton fabrics
finished with triclosan by the use of 1,2,3,4-butanetetracarboxylic acid and citric acid. J Appl
Polym Sci 111(3):1344–1352
69. Orhan M, Kut D, Gunesoglu C (2007) Use of triclosan as antibacterial agent in textiles. Indian
J Fibre Text Res 32(1):114–118
163
48. Liang J, Chen Y, Ren X, Wu R, Barnes K, Worley SD, Broughton RM, Cho U, Kocer H,
Huang TS (2007) Fabric treated with antimicrobial N-halamine epoxides. Ind Eng Chem Res
46(20):6425–6429
49. Demir B, Cerkez I, Worley SD, Broughton RM, Huang TS (2015) N-halamine-modified
antimicrobial polypropylene nonwoven fabrics for use against airborne bacteria. ACS Appl
Mater Interfaces 7(3):1752–1757
50. Cheng X, Li R, Du J, Sheng J, Ma K, Ren X, Huang TS (2015) Antimicrobial activity of
hydrophobic cotton coated with N-halamine. Polym Adv Technol 26(1):99–103
51. Xue Y, Xiao H, Zhang Y (2015) Antimicrobial polymeric materials with quaternary
ammonium and phosphonium salts. Int J Mol Sci 16(2):3626–3655
52. Zhu P, Sun G (2004) Antimicrobial finishing of wool fabrics using quaternary ammonium
salts. J Appl Polym Sci 93(3):1037–1041
53. Riaz S, Ashraf M, Hussain T, Hussain MT (2019) Modification of silica nanoparticles
to develop highly durable superhydrophobic and antibacterial cotton fabrics. Cellulose
26(8):5159–5175
54. Aslanidou D, Karapanagiotis I (2018) Superhydrophobic, superoleophobic and antimicrobial
coatings for the protection of silk textiles. Coatings 8(3):101
55. Berendjchi A, Khajavi R, Yazdanshenas ME (2011) Fabrication of superhydrophobic and
antibacterial surface on cotton fabric by doped silica-based sols with nanoparticles of copper.
Nanoscale Res Lett 6(1):594
56. Aiba S (1992) Studies on chitosan: 4. Lysozymic hydrolysis of partially N-acetylated
Chitosans. Int J Macromol 14:225–228
57. Ravi Kumar MNV (2000) A review of chitin and chitosan applications. React Funct Polym
46:1–27
58. Tolimate A, Desrieres J, Rhazia M (2003) Contribution to the preparation of chitins and
chitosans with controlled physico-chemical properties. Polymer (Guildf) 44:7939–7952
59. Goy RC, de Britto D, Assis OBG (2009) A review of the antimicrobial activity of Chitosan.
Polímeros 19(3):241–247
60. Huang KS, Wu WJ, Chen JB, Lian HS (2008) Application of low-molecular-weight chitosan
in durable press finishing. Carbohydr Polym 73(2):254–260
61. Abdel-Halim ES, Abdel-Mohdy FA, Al-Deyab SS, El-Newehy MH (2010) Chitosan and
monochlorotriazinyl-β-cyclodextrin finishes improve antistatic properties of cotton/polyester
blend and polyester fabrics. Carbohydr Polym 82(1):202–208
62. Moses JJ, Venkataraman VK (2016) Study of chemical treated cotton fabric for functional
finishes using chitosan. J Text Apparel Technol Manag 10(1):1–17
63. Zhang Z, Chen L, Ji J, Huang Y, Chen D (2003) Antibacterial properties of cotton fabrics
treated with chitosan. Text Res J 73(12):1103–1106
64. ¸
Sahan G, Demir A (2016) A green application of nano sized Chitosan in textile finishing.
TEKST ˙ IL ve KONFEKS ˙ IYON 26(4):414–420
65. Scacchetti FAP, Pinto E, Soares GMB (2017) Preparation and characterization of cotton fabrics
with antimicrobial properties through the application of chitosan/silver-zeolite film. Procedia
Eng 200:276–282
66. Perelshtein I, Ruderman E, Perkas N, Tzanov T, Beddow J, Joyce E, Mason TJ, Blanes
M, Mollá K, Patlolla A, Frenkel AI, Gedanken A (2013) Chitosan and chitosan-ZnO-based
complex nanoparticles: formation, characterization, and antibacterial activity. J Mater Chem
B 1(14):1968–1976
67. Regös J, Hitz HR (1974) Investigations on the mode of action of triclosan, a broad spectrum
antimicrobial agent. Zentralbl Bakteriol Orig A 226(3):390–401
68. Orhan M, Kut D, Gunesoglu C (2009) Improving the antibacterial activity of cotton fabrics
finished with triclosan by the use of 1,2,3,4-butanetetracarboxylic acid and citric acid. J Appl
Polym Sci 111(3):1344–1352
69. Orhan M, Kut D, Gunesoglu C (2007) Use of triclosan as antibacterial agent in textiles. Indian
J Fibre Text Res 32(1):114–118
