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      One-step green approach for functional printing and finishing of textiles using silver and gold NPs

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      RSC Advances
      The Royal Society of Chemistry

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          Abstract

          In this study, we present a successful simple method for printing and finishing of polyester and cotton fabrics using gold and silver nanoparticles (Au-NPs and Ag-NPs, respectively) as stable, fast colorants and functional components. The surface plasmon resonance (SPR) bands of the colloidal gold and silver NPs were observed at λ max 520 nm and 450 nm, respectively, indicating the presence of spherical Au-NPs and Ag-NPs, which was further confirmed by TEM analysis. The printed samples were subjected to SEM, XRD and EDX analyses. The SEM images and EDX spectra unequivocally confirmed the existence of embedded NPs on the fabric surfaces. Both the cotton and polyester samples possessed excellent color fastness, as indicated from the color fastness test. The functional properties of the printed fabrics indicated that the incorporation of Au-NPs and Ag-NPs into the fabrics simultaneously imparted multifunctional properties such as stable brilliant colors, highly durable antimicrobial activity and very good UV-protection properties.

          Abstract

          In this study, we present a successful simple method for printing and finishing of polyester and cotton fabrics using gold and silver nanoparticles (Au-NPs and Ag-NPs, respectively) as stable, fast colorants and functional components.

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          Most cited references44

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          Synthesis of silver nanoparticles using Acalypha indica leaf extracts and its antibacterial activity against water borne pathogens.

          In the present study, biosynthesis of silver nanoparticles and its activity on water borne bacterial pathogens were investigated. Silver nanoparticles were rapidly synthesized using leaf extract of Acalypha indica and the formation of nanoparticles was observed within 30min. The results recorded from UV-vis spectrum, scanning electron microscopy (SEM), X-ray diffraction (XRD) and energy dispersive spectroscopy (EDS) support the biosynthesis and characterization of silver nanoparticles. From high-resolution transmission electron microscopy (HRTEM) analysis, the size of the silver nanoparticles was measured 20-30nm. Further, the antibacterial activity of synthesized silver nanoparticles showed effective inhibitory activity against water borne pathogens Viz., Escherichia coli and Vibrio cholerae. Silver nanoparticles 10microg/ml were recorded as the minimal inhibitory concentration (MIC) against E. coli and V. cholerae. Alteration in membrane permeability and respiration of the silver nanoparticle treated bacterial cells were evident from the activity of silver nanoparticles.
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            Gold and Silver Nanoparticles: Synthesis Methods, Characterization Routes and Applications towards Drugs

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              Carboxymethyl cellulose for green synthesis and stabilization of silver nanoparticles

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                Author and article information

                Journal
                RSC Adv
                RSC Adv
                RA
                RSCACL
                RSC Advances
                The Royal Society of Chemistry
                2046-2069
                17 July 2018
                16 July 2018
                17 July 2018
                : 8
                : 45
                : 25546-25557
                Affiliations
                [a] Department of Textile Printing, Dyeing and Finishing, Faculty of Applied Arts, Damietta University Damietta Egypt tasaid@ 123456du.edu.eg soola.a@ 123456hotmail.com
                [b] National Institute for Standards Cairo Egypt khnagare@ 123456hotmail.com
                [c] Department of Agricultural Chemistry and Department of Agricultural Microbiology, Faculty of Agriculture, Damietta University Egypt drkhaled_du@ 123456yahoo.com sherifelkadi@ 123456du.edu.eg
                [d] Department of textile printing, dyeing & finishing, Faculty of Applied Arts, Benha University Benha Egypt emanabdelaziz@ 123456hotmail.com
                Author information
                https://orcid.org/0000-0002-4877-0085
                https://orcid.org/0000-0003-0823-7478
                Article
                c8ra02573h
                10.1039/c8ra02573h
                9082526
                35539781
                7d17db74-867d-43c9-af51-1cc6ac826680
                This journal is © The Royal Society of Chemistry
                History
                : 24 March 2018
                : 2 July 2018
                Page count
                Pages: 12
                Categories
                Chemistry
                Custom metadata
                Paginated Article

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