The antimicrobial functionalization of polyester fabrics (PES) is useful to provide protection from pathogens and reducing odors. Copper nanoparticles (CuNPs) have been widely applied due to their antimicrobial properties and higher biocompatibility compared with other metal nanoparticles. However, the inherent instability of CuNPs under atmospheric conditions and the use of harmful chemicals during their synthesis limit their use. Thus, the development of efficient and safe methods for the CuNPs synthesis and their stabilization onto surfaces present high interest. In this work, PES was functionalized with CuNPs via in situ synthesis using cost-effective and safe chemicals in the presence and absence of chitosan. In sample without chitosan...
The fabrication of antimicrobial textile nanocomposite by in situ synthesis of Cu-based nanoparticle...
Abstract: In this study, we report the green synthesis of copper nanoparticles (CuNPs) by reduction ...
A novel impregnation process for the fabrication of cotton nanocomposite with strong antimicrobial a...
Polyester (PET) fabrics are widely applied in functional textiles due to their outstanding propertie...
Growing demand for sustainable and green technologies has turned industries and research toward the ...
With growing public unease surrounding the extent of microbial infections, there is a demand for ant...
The demand for medical textiles in various forms with strong antimicrobial activity drastically incr...
This study discusses the possibility of in situ synthesis of Cu-based nanoparticles (NPs) on cotton ...
In the present work, the copper oxide nanoparticles (CuO NPs) were successfully synthesized via the ...
This study discusses the possibility of in situ synthesis of Cu-based nanoparticles (NPs) on cotton ...
In this study, Nano copper from the chemical reaction between copper salt and sodium hydroxide was p...
The potential for the application of metal-containing nanomaterials at the nanoscale promotes the op...
This study discusses the possibility of fabrication of antibacterial textile nanocomposite by in s...
© 2017, Pleiades Publishing, Ltd. New composite copper nanoparticles stabilized by hyperbranched pol...
Nanocomposite cotton fabrics (NCCFs) with in situ formed copper nanoparticles (CuNPs) using aqueous ...
The fabrication of antimicrobial textile nanocomposite by in situ synthesis of Cu-based nanoparticle...
Abstract: In this study, we report the green synthesis of copper nanoparticles (CuNPs) by reduction ...
A novel impregnation process for the fabrication of cotton nanocomposite with strong antimicrobial a...
Polyester (PET) fabrics are widely applied in functional textiles due to their outstanding propertie...
Growing demand for sustainable and green technologies has turned industries and research toward the ...
With growing public unease surrounding the extent of microbial infections, there is a demand for ant...
The demand for medical textiles in various forms with strong antimicrobial activity drastically incr...
This study discusses the possibility of in situ synthesis of Cu-based nanoparticles (NPs) on cotton ...
In the present work, the copper oxide nanoparticles (CuO NPs) were successfully synthesized via the ...
This study discusses the possibility of in situ synthesis of Cu-based nanoparticles (NPs) on cotton ...
In this study, Nano copper from the chemical reaction between copper salt and sodium hydroxide was p...
The potential for the application of metal-containing nanomaterials at the nanoscale promotes the op...
This study discusses the possibility of fabrication of antibacterial textile nanocomposite by in s...
© 2017, Pleiades Publishing, Ltd. New composite copper nanoparticles stabilized by hyperbranched pol...
Nanocomposite cotton fabrics (NCCFs) with in situ formed copper nanoparticles (CuNPs) using aqueous ...
The fabrication of antimicrobial textile nanocomposite by in situ synthesis of Cu-based nanoparticle...
Abstract: In this study, we report the green synthesis of copper nanoparticles (CuNPs) by reduction ...
A novel impregnation process for the fabrication of cotton nanocomposite with strong antimicrobial a...