$TiO_{2}$ particles were deposited onto the surface of polyester (PES) material. The microbiological research were carried out on two bacteria strains: Staphylococcus aureus and Klebsiella pneumoniae, which showed antibacterial properties of the PES surfaces modified with the titanium dioxide under the influence of UV radiation
Antimicrobial surfaces have extensive applications as self-cleaning surfaces, for air and water puri...
This study discusses the possibility of engineering the multifunctional textile nanocomposite materi...
This study was aimed to investigate the possibility of engineering the multifunctional textile nanoc...
In this work, the bactericidal properties of TiO2 modified polyester–cotton fabrics were studied. Fa...
International audienceIn sportswear industry, body odors generated, in particular, in shoes are a bi...
This study is aimed to highlight the possibility of using a corona treatment for fiber surface activ...
The development of innovative technologies to modify natural textiles holds an important impact for ...
This study was aimed to highlight the possibility of in situ generation of Ag nanoparticles on polye...
Despite extensive preventative efforts, the problem of controlling infections associated with biomed...
This study is aimed to highlight the possibility of engineering the multifunctional textile nanocomp...
In this study, the antifelting and antibacterial features of wool samples treated with nanoparticles...
This study discusses the possibility of engineering the multifunctional nanocomposite textile materi...
Control and reduction of microorganism infections in high-risk environments is up to date a challeng...
This study discusses the possibility of in situ generation of Ag nanoparticles on polyester fabric b...
In this study the possibility of tailoring the textile nanocomposite materials based on the polyeste...
Antimicrobial surfaces have extensive applications as self-cleaning surfaces, for air and water puri...
This study discusses the possibility of engineering the multifunctional textile nanocomposite materi...
This study was aimed to investigate the possibility of engineering the multifunctional textile nanoc...
In this work, the bactericidal properties of TiO2 modified polyester–cotton fabrics were studied. Fa...
International audienceIn sportswear industry, body odors generated, in particular, in shoes are a bi...
This study is aimed to highlight the possibility of using a corona treatment for fiber surface activ...
The development of innovative technologies to modify natural textiles holds an important impact for ...
This study was aimed to highlight the possibility of in situ generation of Ag nanoparticles on polye...
Despite extensive preventative efforts, the problem of controlling infections associated with biomed...
This study is aimed to highlight the possibility of engineering the multifunctional textile nanocomp...
In this study, the antifelting and antibacterial features of wool samples treated with nanoparticles...
This study discusses the possibility of engineering the multifunctional nanocomposite textile materi...
Control and reduction of microorganism infections in high-risk environments is up to date a challeng...
This study discusses the possibility of in situ generation of Ag nanoparticles on polyester fabric b...
In this study the possibility of tailoring the textile nanocomposite materials based on the polyeste...
Antimicrobial surfaces have extensive applications as self-cleaning surfaces, for air and water puri...
This study discusses the possibility of engineering the multifunctional textile nanocomposite materi...
This study was aimed to investigate the possibility of engineering the multifunctional textile nanoc...