The BiOI-AgI nanocomposites were synthesized by a solvothermal process, followed by an in-situ ion exchange reaction. The disinfection activities of BiOI-AgI on model cell type, Gram-negative Escherichia coli (E. coli), were examined under visible light irradiation conditions. BiOI-AgI could completely inactivate 5??107CFUmL-1 E. coli cells in 18min under visible light irradiation (???400nm). The bactericidal mechanisms involved in this photocatalytic disinfection process were systematically investigated. Ag+ ions released from the nanocomposites did not contribute to the bactericidal activity of BiOI-AgI. Active species including h+, O2-, e-, and H2O2 generated by BiOI-AgI played important roles in the inactivation of bacteria. Direct cont...
This thesis focuses on the design and development of novel antimicrobial nanoplatform to combat bact...
The environmental pollution caused by antibiotics has seriously affected human health and the ecosys...
Cost-effective “green” methods of producing Ag nanoparticles (NPs) are being examined because of the...
AbstractAg/BiOI composites were synthesized by a solvothermal process and subsequent photodeposition...
This work tested the antimicrobial activity of three different biogenic silver nanoparticles (AgNPs)...
Background: In the last decade, research in the field of contaminants of emerging concern proliferat...
A novel Z-scheme AgI/Bi2MoO6 hybrid photocatalyst was fabricated via a solvothermal-precipitation ap...
Silver nanoparticles (Ag-NPs) have strong antimicrobial potential, which has been exploited in many ...
Silver ions have been widely used as an effective water disinfectant or antimicrobial material for m...
The biosynthesis of nano-silica silver nanocomposite (NSAgNC) and it’s as antibacterial effect on gr...
Clinical treatment of pathogenic infection has emerged as a growing challenge in global public healt...
The risk of bioterrorism events involving the intentional airborne release of contagious agents has ...
A novel in situ core@shell structure consisting of nanoparticles of Ag (Ag Nps) and AgI in agarose m...
The environmental pollution caused by antibiotics has seriously affected human health and the ecosys...
Visible light-driven photocatalytic inactivation of Escherichia coli was performed using hydroxyapat...
This thesis focuses on the design and development of novel antimicrobial nanoplatform to combat bact...
The environmental pollution caused by antibiotics has seriously affected human health and the ecosys...
Cost-effective “green” methods of producing Ag nanoparticles (NPs) are being examined because of the...
AbstractAg/BiOI composites were synthesized by a solvothermal process and subsequent photodeposition...
This work tested the antimicrobial activity of three different biogenic silver nanoparticles (AgNPs)...
Background: In the last decade, research in the field of contaminants of emerging concern proliferat...
A novel Z-scheme AgI/Bi2MoO6 hybrid photocatalyst was fabricated via a solvothermal-precipitation ap...
Silver nanoparticles (Ag-NPs) have strong antimicrobial potential, which has been exploited in many ...
Silver ions have been widely used as an effective water disinfectant or antimicrobial material for m...
The biosynthesis of nano-silica silver nanocomposite (NSAgNC) and it’s as antibacterial effect on gr...
Clinical treatment of pathogenic infection has emerged as a growing challenge in global public healt...
The risk of bioterrorism events involving the intentional airborne release of contagious agents has ...
A novel in situ core@shell structure consisting of nanoparticles of Ag (Ag Nps) and AgI in agarose m...
The environmental pollution caused by antibiotics has seriously affected human health and the ecosys...
Visible light-driven photocatalytic inactivation of Escherichia coli was performed using hydroxyapat...
This thesis focuses on the design and development of novel antimicrobial nanoplatform to combat bact...
The environmental pollution caused by antibiotics has seriously affected human health and the ecosys...
Cost-effective “green” methods of producing Ag nanoparticles (NPs) are being examined because of the...