Functional Finishes for Cotton‐Based Textiles: Current Situation and Future Trends
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[1] E.J. Grajeck,et al. Oil and Water Repellent Fluorochemical Finishes for Cotton , 1962 .
[2] Bernd Wahle,et al. Softeners in textile processing. Part 1: An overview† , 2002 .
[3] N. Ibrahim,et al. Studies of some basic aspects in easy‐care cotton finishing, IV. Effect of acid scavengers on free formaldehyde in and strength of crosslinked cotton , 1979 .
[4] Hyung-Min Choi,et al. Performance improvement of nonformaldehyde wrinkle resistant finished cotton fabrics treated with dialdehydes , 2001 .
[5] Xungai Wang,et al. Nanoparticle Coatings for UV Protective Textiles , 2010 .
[6] T. Zhao,et al. Review on: developing UV protection for cotton fabric , 2017 .
[7] Nabil A. Ibrahim,et al. An eco-friendly – novel approach for attaining wrinkle – free/soft-hand cotton fabric , 2009 .
[8] S. Stanković,et al. Ultraviolet Protection Factor of Gray-state Plain Cotton Knitted Fabrics , 2009 .
[9] N. Ibrahim,et al. Smart options for simultaneous functionalization and pigment coloration of cellulosic/wool blends. , 2013, Carbohydrate polymers.
[10] G. Ciardelli,et al. Evaluating Fluorinated Acrylic Latices as Textile Water and Oil Repellent Finishes , 2001 .
[11] H. Schmid,et al. Flame retardant functional textiles , 2011 .
[12] M. Abd El-Hady,et al. Preparation of multifunctional cationized cotton fabric based on TiO2 nanomaterials. , 2013, International journal of biological macromolecules.
[13] Ali Hasanbeigi,et al. A technical review of emerging technologies for energy and water efficiency and pollution reduction in the textile industry , 2015 .
[14] J. Genzer,et al. Alternative Fluoropolymers to Avoid the Challenges Associated with Perfluorooctanoic Acid , 2008 .
[15] A. Granzow,et al. Flame retardation by phosphorus compounds , 1978 .
[16] J. Kovač,et al. Sol–gel coating of cellulose fibres with antimicrobial and repellent properties , 2008 .
[17] Mohammad Shahid,et al. Perspectives for natural product based agents derived from industrial plants in textile applications – a review , 2013 .
[18] A. Scalbert. Antimicrobial properties of tannins , 1991 .
[19] N. Ibrahim,et al. New Approach for Improving Antibacterial Functions of Cotton Fabric , 2008 .
[20] N. Ibrahim,et al. A novel approach for adding smart functionalities to cellulosic fabrics. , 2012, Carbohydrate polymers.
[21] N. Ibrahim,et al. Cellulosic/wool pigment prints with remarkable antibacterial functionalities. , 2015, Carbohydrate polymers.
[22] J. Xin,et al. Advanced Visible-Light-Driven Self-Cleaning Cotton by Au/TiO2/SiO2 Photocatalysts , 2010 .
[23] N. Pan,et al. Functional textiles for improved performance, protection and health , 2011 .
[24] Yuan Gao,et al. Recent Advances in Antimicrobial Treatments of Textiles , 2008 .
[25] D. Gupta,et al. 8 – Self cleaning finishes for textiles , 2015 .
[26] Asim Kumar Roy Choudhury,et al. Green chemistry and the textile industry , 2013 .
[27] S. Kalia,et al. Surface modification of plant fibers using environment friendly methods for their application in polymer composites, textile industry and antimicrobial activities: A review , 2013 .
[28] P. Hauser,et al. 6 – Repellent finishes , 2004 .
[29] Jin-Ho Jang,et al. Superhydrophobicity of cotton fabrics treated with silica nanoparticles and water-repellent agent. , 2009, Journal of colloid and interface science.
[30] N. Ibrahim,et al. Proper finishing treatments for sun‐protective cotton‐containing fabrics , 2005 .
[31] Xiaohong Li,et al. Flame retardant coatings prepared using layer by layer assembly: A review , 2018 .
[32] N. Ibrahim,et al. Smart Options for Functional Finishing of Linen-containing Fabrics , 2010 .
[33] N. Vigneshwaran,et al. Functional finishing in cotton fabrics using zinc oxide nanoparticles , 2006 .
[34] A. Aktaş,et al. Modifying of Cotton Fabric Surface with Nano-ZnO Multilayer Films by Layer-by-Layer Deposition Method , 2010, Nanoscale research letters.
[35] H. Ibrahim,et al. Multifunctional finishing of cellulosic/polyester blended fabrics. , 2013, Carbohydrate polymers.
[36] Yumin Du,et al. Chitosan- metal complexes as antimicrobial agent: Synthesis, characterization and Structure-activity study , 2005 .
[37] H. M. Behery,et al. Comparison of Fabric Hand Assessment in the United States and Japan , 1986 .
[38] A. Choudhury. Flame- and fire-retardant finishes , 2017 .
[39] Yingchao Hu,et al. The preparation and antibacterial activity of cellulose/ZnO composite: a review , 2018 .
[40] A. Amr,et al. Poly(acrylic acid)/poly(ethylene glycol) adduct for attaining multifunctional cellulosic fabrics. , 2012, Carbohydrate polymers.
[41] N. Ibrahim,et al. An Eco-Friendly Multifunctional Nano-Finishing of Cellulose/Wool Blends , 2018, Fibers and Polymers.
[42] J. Xin,et al. A New Approach to UV-Blocking Treatment for Cotton Fabrics , 2004 .
[43] A. Choudhury. Easy-care finishing , 2017 .
[44] I. Hardin,et al. Nanotechnology for antimicrobial textiles , 2016 .
[45] Sabyasachi Gaan,et al. Recent Advances for Flame Retardancy of Textiles Based on Phosphorus Chemistry , 2016, Polymers.
[46] A. Aktaş,et al. Nano-TiO2 based multilayer film deposition on cotton fabrics for UV-protection , 2011 .
[47] I. Holme. Innovative technologies for high performance textiles , 2007 .
[48] A. Choudhury. Finishes for protection against microbial, insect and UV radiation , 2017 .
[49] S. Saha,et al. Comparison of performances of macro, micro and nano silicone softeners , 2012 .
[50] A. El-Shafei,et al. Antimicrobial activity of cotton fabrics containing immobilized enzymes , 2007 .
[51] Cem Gunesoglu,et al. Improving the antibacterial activity of cotton fabrics finished with triclosan by the use of 1,2,3,4‐butanetetracarboxylic acid and citric acid , 2009 .
[52] S. Michielsen,et al. Preparation of a superhydrophobic rough surface , 2007 .
[53] M. Montazer,et al. Past, present and future prospects of cotton cross-linking: New insight into nano particles , 2012 .
[54] C. M. Welch. Formaldehyde-free durable-press finishes , 2008 .
[55] Brian Edwards,et al. Preparation, Polymerization, and Performance Evaluation of Halogen-Free Radiation Curable Flame Retardant Monomers for Cotton Substrates , 2015 .
[56] R. Nayak,et al. Antimicrobial finishes for textiles , 2014 .
[57] A. A. Almetwally,et al. Functional finishes of stretch cotton fabrics. , 2013, Carbohydrate polymers.
[58] F. Ferrero,et al. Water and oil-repellent coatings of perfluoro-polyacrylate resins on cotton fibers: UV curing in comparison with thermal polymerization , 2012, Fibers and Polymers.
[59] N. Ibrahim,et al. A smart approach to add antibacterial functionality to cellulosic pigment prints. , 2013, Carbohydrate polymers.
[60] X. Ren,et al. Rechargeable biocidal cellulose: Synthesis and application of 3-(2,3-dihydroxypropyl)-5,5-dimethylimidazolidine-2,4-dione , 2009 .
[61] N. Ibrahim,et al. Advanced Materials and Technologies for Antimicrobial Finishing of Cellulosic Textiles , 2018, Handbook of Renewable Materials for Coloration and Finishing.
[62] Polona Dobnik Dubrovski,et al. Effects of Woven Fabric Construction and Color on Ultraviolet Protection , 2009 .
[63] M. M. Cowan. Plant Products as Antimicrobial Agents , 1999, Clinical Microbiology Reviews.
[64] K. Opwis,et al. Surface modification of textile materials with hydrophobins , 2011 .
[65] Shahid-ul-Islam,et al. Green chemistry approaches to develop antimicrobial textiles based on sustainable biopolymers—a review , 2013 .
[66] Gang Sun,et al. Whiteness improvement of citric acid crosslinked cotton fabrics: H2O2 bleaching under alkaline condition. , 2016, Carbohydrate polymers.
[67] M. Gouda,et al. Multifunctional Anionic Cotton Dyeings , 2010 .
[68] Li Li,et al. Artificial lotus leaf structures from assembling carbon nanotubes and their applications in hydrophobic textiles , 2007 .
[69] M. D. Dixit. DEVELOPMENTAL ASPECTS OF TEXTILE WET-PROCESSING MACHINERY , 1997 .
[70] Li-Huei Lin,et al. Surface activity and water repellency properties of cleavable-modified silicone surfactants , 2006 .
[71] M. Hashem,et al. Enhancing antimicrobial properties of dyed and finished cotton fabrics , 2009 .
[72] Claire Longuet,et al. Flame retardancy of silicone-based materials , 2009 .
[73] C. Kan,et al. Developments in functional finishing of cotton fibres – wrinkle-resistant, flame-retardant and antimicrobial treatments , 2012 .
[74] A. Sarkar,et al. On the relationship between fabric processing and ultraviolet radiation transmission , 2007, Photodermatology, photoimmunology & photomedicine.
[75] Nabil A. Ibrahim,et al. Nanomaterials for Antibacterial Textiles , 2015 .
[76] N. Ibrahim,et al. Novel approach for improving disperse dyeing and UV-protective function of cotton-containing fabrics using MCT-β-CD , 2010 .
[77] M. Fouda,et al. Improving easy care properties of cotton fabric via dual effect of ester and ionic crosslinking , 2011 .
[78] P. Bajaj,et al. Finishing of textile materials , 2002 .
[79] N. Ibrahim,et al. Single-stage process for bifunctionalization and eco-friendly pigment coloration of cellulosic fabrics , 2015 .
[80] Abdul Jabbar,et al. Antimicrobial natural products: an update on future antibiotic drug candidates. , 2010, Natural product reports.
[81] Majid Montazer,et al. Enhanced Self‐cleaning, Antibacterial and UV Protection Properties of Nano TiO2 Treated Textile through Enzymatic Pretreatment , 2011, Photochemistry and photobiology.
[82] Faming Wang,et al. Development Processes and Property Measurements of Moisture Absorption and Quick Dry Fabrics , 2009 .
[83] M. Abdel-Aziz,et al. Effect of plasma superficial treatments on antibacterial functionalization and coloration of cellulosic fabrics , 2017 .
[84] Ayesha Kausar,et al. Recent Developments in Different Types of Flame Retardants and Effect on Fire Retardancy of Epoxy Composite , 2016 .
[85] G. Malucelli,et al. Green DNA-based flame retardant coatings assembled through Layer by Layer , 2013 .
[86] T. Stelzig,et al. 14 – Flame retardant finishes for textiles , 2015 .
[87] J. Gutmann,et al. Durable press finishing of cotton fabrics: An overview , 2013 .
[88] A. Bereck,et al. Part 2: Silicone softeners† , 2002 .
[89] Mubarak A. Khan,et al. An Overview on Surface Modification of Cotton Fiber for Apparel Use , 2013, Journal of Polymers and the Environment.
[90] G. Camino,et al. 10 – Intumescent materials , 2001 .
[91] Nabil A. Ibrahim,et al. A new approach for natural dyeing and functional finishing of cotton cellulose , 2010 .
[92] W. Qianqian,et al. Developing a novel UV protection process for cotton based on layer-by-layer self-assembly , 2010 .
[93] K. Hong,et al. Gallnut extract-treated wool and cotton for developing green functional textiles , 2014 .
[94] J. Hinestroza,et al. Metal nanoparticles on natural cellulose fibers: electrostatic assembly and in situ synthesis. , 2009, ACS applied materials & interfaces.
[95] N. Ibrahim,et al. Chitosan ‐Based Composite Materials: Fabrication and Characterization , 2017 .
[96] N. Lall,et al. Antibacterial activities and cytotoxicity of terpenoids isolated from Spirostachys africana. , 2008, Journal of ethnopharmacology.
[97] N. A. Ibahim,et al. Functionalization of linen/cotton pigment prints using inorganic nano structure materials. , 2013, Carbohydrate polymers.
[98] N. Ibrahim,et al. Novel Approach for Attaining Cotton Fabric with Multi-Functional Properties , 2010 .
[99] A. Sarkar,et al. An evaluation of UV protection imparted by cotton fabrics dyed with natural colorants , 2004, BMC dermatology.
[100] Qiang Zhang,et al. A mechanistic study of flame retardance of novel copolyester phosphorus containing linked pendant groups by TG/XPS/direct Py-MS , 2008 .
[101] P. Hauser,et al. 3 – Softening finishes , 2004 .
[102] M. Radetić. Functionalization of textile materials with TiO2 nanoparticles , 2013 .
[103] N. Ibrahim,et al. Combined antimicrobial finishing and pigment printing of cotton/polyester blends. , 2013, Carbohydrate polymers.
[104] K. Opwis,et al. Permanent flame retardant finishing of textiles by allyl-functionalized polyphosphazenes. , 2015, ACS applied materials & interfaces.
[105] C. Pulgarin,et al. Innovative self-cleaning and bactericide textiles , 2010 .
[106] Lenore L. Dai,et al. Cotton fabric surface modification for improved UV radiation protection using sol–gel process , 2007 .
[107] Seeram Ramakrishna,et al. A review on self-cleaning coatings , 2011 .
[108] Franco Ferrero,et al. Hydrophobic sol-gel finishing for textiles: Improvement by plasma pre-treatment , 2013 .
[109] N. Ibrahim,et al. Antibacterial functionalization of reactive-cellulosic prints via inclusion of bioactive Neem oil/βCD complex , 2011 .
[110] N. Ibrahim,et al. A new approach for imparting durable multifunctional properties to linen-containing fabrics. , 2017, Carbohydrate polymers.
[111] R. Guedes,et al. Antimicrobial Approaches for Textiles: From Research to Market , 2016, Materials.
[112] Didem Deliorman Orhan,et al. Antibacterial, antifungal, and antiviral activities of some flavonoids. , 2010, Microbiological research.
[113] R. Paul,et al. Nano-cotton Fabrics with High Ultraviolet Protection , 2010 .
[114] J. Tiller,et al. Antimicrobial Polymers in Solution and on Surfaces: Overview and Functional Principles , 2012 .
[115] M. Mirjalili,et al. Comparison between antibacterial activity of some natural dyes and silver nanoparticles , 2013, Journal of Nanostructure in Chemistry.
[116] Samuel B. Moore,et al. Systems thinking and green chemistry in the textile industry: concepts, technologies and benefits , 2004 .
[117] Min Chen,et al. Fabrication method of TiO2-SiO2 hybrid capsules and their UV-protective property , 2010 .
[118] F. Qing,et al. Synthesis of perfluoroalkyl-containing multifunctional groups compounds for textile finishing , 2002 .
[119] Ming Kong,et al. Antimicrobial properties of chitosan and mode of action: a state of the art review. , 2010, International journal of food microbiology.
[120] B. Mahltig. 13 – Hydrophobic and oleophobic finishes for textiles , 2015 .
[121] Jie Liang,et al. Antimicrobial efficacy and light stability of N-halamine siloxanes bound to cotton , 2008 .
[122] N. Ibrahim,et al. Loading of chitosan - Nano metal oxide hybrids onto cotton/polyester fabrics to impart permanent and effective multifunctions. , 2017, International journal of biological macromolecules.
[123] Charles Q. Yang,et al. Evaluating Glutaraldehyde as a Nonformaldehyde Durable Press Finishing Agent for Cotton Fabrics , 2000 .
[124] N. Ibrahim,et al. UV‐protecting and antibacterial finishing of cotton knits , 2009 .
[125] N. Ibrahim,et al. Multifunctional cellulose-containing fabrics using modified finishing formulations , 2017 .
[126] M. Vanneste. 7 – Easy care finishes for textiles , 2015 .
[127] A. Richard Horrocks,et al. Flame retardant challenges for textiles and fibres: New chemistry versus innovatory solutions , 2011 .
[128] N. Ibrahim,et al. Eco‐friendly durable press finishing of cellulose‐containing fabrics , 2002 .
[129] Barbara Simončič,et al. Structures of Novel Antimicrobial Agents for Textiles - A Review , 2010 .
[130] M. Abdel-Aziz,et al. Green synthesis of AuNPs for eco-friendly functionalization of cellulosic substrates , 2016 .
[131] M. Teli. 4 – Softening finishes for textiles and clothing , 2015 .
[132] N. Ibrahim,et al. Green options for imparting antibacterial functionality to cotton fabrics. , 2018, International journal of biological macromolecules.
[133] P. Hauser,et al. Wrinkle Recovery for Cellulosic Fabric by Means of Ionic Crosslinking , 2003 .
[134] N. Ibrahim,et al. Effect of Knit Structure and Finishing Treatments on Functional and Comfort Properties of Cotton Knitted Fabrics , 2010 .
[135] Jenny Alongi,et al. Cotton flame retardancy: state of the art and future perspectives , 2015 .