Page 53 - New Cloth Market November 2022 Digital Edition
P. 53
Chitosan-Based Sustainable Textile Technology: Process, Mechanism, Innovation & Safety
Vazquez-Torres H, Sepulveda- 2008;99:185–91. microcapsules and their application
Sanchez JD, Shirai K. Cross-linking [74] Kandola BK, Horrocks AR, Price D, to cotton fabric. Flavour Fragr J.
chitosan into UV-irradiated cellulose Road ED, Sciences C, Science D, 2014;29:114–20.
fibers for the preparation of et al. Flameretardant treatments of [84] Estevinho BN, Damas AM, Martins
antimicrobial-finished textiles.
cellulose and their influence on the P, Rocha F. The influence of
Carbohydr Polym. 2009;77:536–43.
mechanism of cellulose pyrolysis. J microencapsulation with a modified
[65] Ali SW, Rajendran S, Joshi M. Macromol Sci Part C. 1996;36:721– chitosan (Water Soluble) on ß-
Synthesis and characterization of 94. galactosidase activity. Dry Technol.
chitosan and silver loaded chitosan 2014;32:1575–86.
[75] Medeiros ES, Mattoso LHC, Ito EN,
nanoparticles for bioactive polyester.
Gregorski KS, Robertson GH, [85] Cheng SY, Yuen CWM, Kan CW,
Carbohydr Polym. 2011;83:438–46.
O??eman RD, et al. Electrospun Cheuk KKL. Development of
[66] Arain RA, Khatri Z, Memon MH, Kim nanofibers of poly(vinyl alcohol) cosmetic textiles using
IS. Antibacterial property and reinforced with cellulose nanofibrils. microencapsulation technology.
characterization of cotton fabric J Biobased Mater Bioenergy. Res J Text Appar. 2008;12:41–51.
treated with chitosan/AgCl-TiO2 2008;2:231–42. [86] Li Y, McClements DJ. Controlling
colloid. Carbohydr Polym. [76] Wenzel RN. Resistance of solid lipid digestion by encapsulation of
2013;96:326–31.
surfaces to wetting by water. Ind Eng protein-stabilized lipid droplets
[67] de Oliveira Pedro R, –chmi?? CC, Chem. 1936;28:988–94. within alginate-chitosan complex
Neumann MG. Syntheses and [77] Rollings DE, Veinot JGC. coacervates. Food Hydrocoll.
characterization of amphiphilic Polysiloxane nanofibers via surface 2011;25:1025–33.
quaternary ammonium chitosan initiated polymerization of vapor [87] Hussain MR, Maji TK. Preparation
derivatives. Carbohydr Polym.
phase reagents: A mechanism of of genipin cross-linked chitosan-
2016;147: 97–103.
formation and variable wettability of gelatin microcapsules for
[68] Laufer G, Kirkland C, Morgan AB, fiber-bearing substrates. Langmuir. encapsulation of Zanthoxylum
Grunlan JC. Intumescent multilayer 2008;24:13653–62. limonella oil (ZLO) using salting-out
nanocoating, made with renewable method. J Microencapsul.
[78] Ivanova NA, Rutberg GI,
polyelectrolytes, for flame-retardant 2008;25:414–20.
Philipchenko AB. Enhancing the
cotton. Biomacromolecules. [88] Guo C, Zhou L, Lv J. Effects of
2012;13 :2843–8. superhydrophobic state stability of
chitosan-based coatings for textiles. expandable graphite and modified
[69] Charuchinda S, Srikulkit K. Co- Macromol Chem Phys. ammonium polyphosphate on the
application of sodium 2013;214:1515–21. flame-retardant and mechanical
polyphosphate and chitosan to properties of wood flouro-
improve flame retardancy of cotton [79] Liu Y, Chen X, Xin JH. Hydrophobic polypropylene composites. Polym
fabric. J Sci Res Chula Univ. duck feathers and their simulation Polym Compos. 2013;21(7):449–
2005;30:97–107. on textile substrates for water 56.
repellent treatment. Bioinspir
[70] Hebeish A. Chitosan phosphate Biomim. 2008; 3:046007. [89] Butstraen C, Salaün F. Preparation
induced better Thermal of microcapsules by complex
characteristics to cotton fabric. J [80] Tian M, Tang X, Qu L, Zhu S, Guo X, coacervation of gum Arabic and
Appl Polym Sci. 2006;103:2021–6. Han G. Robust ultraviolet blocking chitosan. Carbohydr Polym.
cotton fabric modified with chitosan/ 2014;99:608–16.
[71] Hu S, Song L, Pan H, Hu Y. Thermal graphene nanocomposites. Mater
properties and combustion Lett. 2015;145:340–3. [90] Su ZQ, Zhang HL, Wu SH, Tao Y,
behaviors of chitosan based flame Zang LQ. Preparation and
retardant combining phosphorus [81] Alonso D, Gimeno M, Sepulveda- characterization of watersoluble
and nickel. Ind Eng Chem Res. Sanchez JD, Shirai K. Chitosan- chitosan nanoparticles as protein
2012;51:3663–9. based microcapsules containing delivery system. J Nanomater.
grapefruit seed extract grafted onto 2010;2010.
[72] Leistner M, Abu-odeh AA, Rohmer cellulose fibers by a non-toxic
SC, Grunlan JC. Water-based [91] Yoksan R, Jirawu??hiwongchai J,
procedure. Carbohydr Res.
chitosan/melamine polyphosphate Arpo K. Encapsulation of ascorbyl
2010;345:854–9.
multilayer nanocoating that palmitate in chitosan nanoparticles
extinguishes fire on polyester/cotton [82] Briones AV, Sato T. Encapsulation by oil-in-water emulsion and ionic
fabric. Carbohydr Polym. of glucose oxidase (GOD) in gelation processes. Colloids Surf B
2015;130:227–32. polyelectrolyte complexes of Biointerfaces. 2010;76:292–7.
chitosan-carrageenan. React Funct
[73] El-Tahlawy K. Chitosan phosphate: [92] Hassani S, Laouini A, Fessi H,
Polym. 2010;70:19–27.
A new way for production of Charcosset C. Preparation of
chitosan phosphate for production [83] Yang Z, Zeng Z, Xiao Z, Ji H. chitosan-TPP nanoparticles using
of eco-friendly flame-retardant Preparation and controllable microengi-neered membranes.
cotton textiles. J Text Inst. release of chitosan/vanillin Contd. On Page 82
NCM-NOVEMBER 2022
53