4.6 Article

Fabrication of chitosan-based finishing agent for flame-retardant, UV-protective, and antibacterial cotton fabrics

期刊

MATERIALS TODAY COMMUNICATIONS
卷 33, 期 -, 页码 -

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ELSEVIER
DOI: 10.1016/j.mtcomm.2022.104637

关键词

Chitosan; Multifunctional textiles; Flame-retardant; Antibacterial; UV-protective

资金

  1. TEQIP phase III
  2. DST inspire faculty fellowship
  3. DST SERB ECR Grant
  4. UGC [F.4-2/2006(BSR)/CH/18-19/0074]

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This study developed a simple method for synthesizing nitrogen-phosphorus-rich green multifunctional chemical agents for fire-retardant, UV-protective, and antibacterial cotton fabrics. The treated cotton fabrics exhibited excellent fire retardancy, UV protection, and antibacterial properties, with acceptable impacts on mechanical properties.
This study developed a simple method for synthesizing nitrogen-phosphorus-rich green multifunctional chemical agents for fire-retardant, UV-protective, and antibacterial cotton fabrics. Chitosan was obtained from chitin via deacetylation. Extracted chitosan was then chemically modified with melamine and sodium pyrophosphate as nitrogen and phosphorous sources, respectively, and glyoxal as a crosslinking agent. The structural, chemical and thermal properties of modified chitosan and multifunctional cotton fabrics were determined using FTIR, XRD, and TGA. The use of LOI and vertical flammability tests to evaluate the fire-retardant properties of treated cotton fabrics confirmed the fire retardancy imparted to the treated fabrics. The treated cotton fabrics also provided excellent UV protection and were highly effective at inhibiting the growth of tested gram-positive and gramnegative bacteria. The LOI and UPF for the highest concentration treatment were found to be more than 30 and 100 respectively whereas there was nearly 99% reduction in the bacterial colonies on treated cotton. Although the treatment had a negative impact on the mechanical properties of the fabrics, it was within acceptable limits for textile standards.

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