AI Article Synopsis

  • The demand for durable and versatile cotton fabrics is increasing, leading to the development of a multifunctional coating using MXene and a specific quaternary ammonium salt (QAS).
  • The coated cotton fabric (CF@P@M@QAS) exhibits enhanced antibacterial properties, achieving up to 100% effectiveness against Staphylococcus aureus and 98% against E. coli, alongside mechanical stability and hydrophobicity.
  • Additionally, this fabric offers fire safety and physical therapy benefits, making it a promising option for use in medical electronics and therapeutic applications.

Article Abstract

With the continuous development of the society, there is a growing demand for the durability, versatility and multifunction of cott fabrics. In this work, the cotton fabric is coated with multifunctional coating via dip-coating of transition metal carbide (MXene) and then encapsulation of dimethyloctadecyl [3-trimethoxysilopropyl] ammonium chloride (QAS). In view of MXene with excellent light absorption and photothermal conversion efficiency, the controllable antibacterial performance of the cotton fabric is further improved. Benefiting from the encapsulation of QAS, CF@P@M@QAS fabric shows mechanical stability (24 h washing, 1000 cycles folding test and 100 cyclic abrasion) and hydrophobicity. Meantime, the QAS on the surface of multifunctional cotton fabric significantly increases antibacterial activity, and the antibacterial rate can reach to 100 % against Staphylococcus aureus (S. aureus) and 98 % Escherichia coli (E. coli). Besides, CF@P@M@QAS cotton fabric also integrates functions of fire safety and physical therapy. Thus, this multifunctional cotton fabric based MXene offers a novel solution for extending its application in medical electronics and physical therapy.

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Source
http://dx.doi.org/10.1016/j.ijbiomac.2024.130157DOI Listing

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