This study presents new evidence for the events leading to Escherichia coli reduction in the absence of light irradiation on TiO2-polyester (from now on TiO2-PES. By transmission electron microscopy (TEM) the diffusion of TiO2 NP's aggregates with the E. coli outer lipo-polyssacharide (LPS) layer is shown to be a prerequisite for the loss of bacterial cultivability. Within 30 min in the dark the TiO2 aggregates interact with E. coli cell wall leading within 120 min to the complete loss of bacterial cultivability on a TiO2-PES 5% TiO2 sample. The bacterial reduction was observed to increase with a higher TiO2 loading on the PES up to 5%. Bacterial disinfection on TiO2-PES in the dark was slower compared to the runs under low intensity simula...
TiO2 coated surfaces are able to generate highly reactive oxidizing species under mild UV-A light ex...
Titanium dioxide (TiO2) photocatalysts have attracted great attention as alternative concept to aid ...
The release of nanomaterials into the environment, due to their massive production and application t...
This paper addresses recent developments in the design, evaluation, and characterization of flexible...
TiO2 nanoparticles (NPs) activated by UV irradiation are known to have a bactericidal effect. In thi...
Article Number: 036409. Funding Agency: European Social Fund; Grant Number: VP1-3.1-SMM-10-V-02-019P...
This study addresses the preparation and characterization of hybrid films prepared from Titanium dio...
The beneficial photocatalytic properties of UV light activated TiO2 powder are well-known and have b...
Bactericidal action of illuminated TiO2 on pure culture of Escherichia coli K 12 and bacterial conso...
It has been shown that treatment with titanium dioxide nanoparticles (TiO<sub>2</sub> NPs) combined ...
Abstract Bactericidal activity of traditional titanium dioxide (TiO2) photocatalyst is effective onl...
Antimicrobial surfaces have extensive applications as self-cleaning surfaces, for air and water puri...
This study shows that the surface modification of TiO2 is an effective route to increase the TiO2 ab...
The selective control of pathogenic bacteria is an ongoing challenge. A strategy is proposed that co...
16 pagesInternational audienceLarge-scale production and incorporation of titanium dioxide nanoparti...
TiO2 coated surfaces are able to generate highly reactive oxidizing species under mild UV-A light ex...
Titanium dioxide (TiO2) photocatalysts have attracted great attention as alternative concept to aid ...
The release of nanomaterials into the environment, due to their massive production and application t...
This paper addresses recent developments in the design, evaluation, and characterization of flexible...
TiO2 nanoparticles (NPs) activated by UV irradiation are known to have a bactericidal effect. In thi...
Article Number: 036409. Funding Agency: European Social Fund; Grant Number: VP1-3.1-SMM-10-V-02-019P...
This study addresses the preparation and characterization of hybrid films prepared from Titanium dio...
The beneficial photocatalytic properties of UV light activated TiO2 powder are well-known and have b...
Bactericidal action of illuminated TiO2 on pure culture of Escherichia coli K 12 and bacterial conso...
It has been shown that treatment with titanium dioxide nanoparticles (TiO<sub>2</sub> NPs) combined ...
Abstract Bactericidal activity of traditional titanium dioxide (TiO2) photocatalyst is effective onl...
Antimicrobial surfaces have extensive applications as self-cleaning surfaces, for air and water puri...
This study shows that the surface modification of TiO2 is an effective route to increase the TiO2 ab...
The selective control of pathogenic bacteria is an ongoing challenge. A strategy is proposed that co...
16 pagesInternational audienceLarge-scale production and incorporation of titanium dioxide nanoparti...
TiO2 coated surfaces are able to generate highly reactive oxidizing species under mild UV-A light ex...
Titanium dioxide (TiO2) photocatalysts have attracted great attention as alternative concept to aid ...
The release of nanomaterials into the environment, due to their massive production and application t...