Enhancement of Antimicrobial and Dyeing Properties of Cellulosic Fabrics via Chitosan Nanoparticles

Author:

Mosaad Rehab M.,Alhalafi Mona H.,Emam El-Amir M.ORCID,Ibrahim Marwan A.ORCID,Ibrahim Hassan

Abstract

The primary goal of this study is to prepare chitosan nanoparticles (CSNPs) by the ionic gelation method via the treatment of chitosan (0.2 wt.%) with tripolyphosphate (0.2 wt.%) ultrasonically for 45 min. FT-IR spectroscopy and TEM images were used to characterize and validate CSNP production. Cellulosic materials with different concentrations of CSNPs have better antibacterial and colouring characteristics. The treated cellulosic fabrics were analyzed by FT-IR spectroscopy, SEM, and thermogravimetric analysis. Colourimetric data measurements expressed in K/S values were used to evaluate the impact of CSNPs on the dyeing affinity of cellulosic materials. In addition, antibacterial activity against bacteria and fungi was tested on the treated cellulosic fabrics. According to the K/S values, cellulosic textiles treated with CSNPs (0.3 wt.%) had a better affinity for acid dyeing. These textiles also offer better antibacterial properties and are more resistant to washing, light, and rubbing. A cytotoxicity study found that CSNPs give cellulosic materials antibacterial and acid dyeing properties, which is good for the environment.

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

Reference57 articles.

1. Preparation of cotton gauze coated with carboxymethyl chitosan and its utilization for water filtration;Ibrahim;J. Text. Appar. Technol. Manag.,2019

2. Preparation of biocompatible chitosan nanoparticles loaded with Aloe vera extract for use as a novel drug delivery mechanism to improve the antibacterial characteristics of cellulose-based fabrics

3. Improvement of dyeability and antibacterial properties of gelatin treated cotton fabrics with synthesized reactive dye;Mohamed;Biosci. Res.,2018

4. Microwave-Mediated Rapid Oxidation and Cationization of Cotton Cellulose;Park;Cell. Chem. Technol.,2018

5. Low-Salt or Salt-Free Dyeing of Cotton Fibers with Reactive Dyes using Liposomes as Dyeing/Level-Dyeing Promotors

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