Nanotechnology: Control atoms or molecules at the nanometer (1 ~ 100nm) level and enable them to develop new functions and better characteristics. Nanotechnology includes the “top-down method” that challenges ultra-fine processing and the “bottomup method” that uses atoms and molecules to build nanostructures in tens to hundreds of units.
Characteristics of nanofabrication:
Fabric processing using nanotechnology includes
(1) Use self-organizing technology to form a functional agent film on the surface of single fibers. Based on the formation of this film, the durability of pollen adhesion prevention processing, anti-fouling processing, etc., and the dramatic improvement of these effects, o:p>
(2) Not only are the processed products that use nano-silver particles to give cotton fibers antibacterial and deodorant properties and their antibacterial and deodorant properties, they should also be non-adhesive,
(3) Washing resistance of ultraviolet shielding processed products using nano zinc oxide particles (microencapsulated by emulsion polymerization of acrylate monomers with glycidyl groups) and glyoxal resin to form covalent bonds with cotton fibers The performance has been significantly improved and other excellent features.
From an environmental perspective:
Nanoparticles, especially when using metals and their oxides, pose health and environmental risks. Some nanoparticles have been shown to be toxic to the lungs of rats and mice. Additionally, there is the danger of ecosystem contamination to the food chain. Therefore, the evaluation of the health and environmental risks of nanoprocessing is indispensable.
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