Colonization of surfaces by microorganisms is an urging problem. In combination with the increasing antibiotic resistance of pathogenic bacteria, severe infections are reported more frequently in medical settings. Therefore, there is a large demand to explore innovative surface coatings that provide intrinsic and highly effective antibacterial activity. Materials containing silver nanoparticles have been developed in the past for this purpose, but this solution has come into criticism due to various disadvantages like notable toxicity against higher organisms, the high price, and low abundance of silver. Here, we introduce a new, sunlight-mediated organosilica nanoparticle (NP) system based on silver-free antibacterial activity. The simulta...
Healthcare-associated infections pose a serious risk for patients, staff, and visitors and are a sev...
Healthcare-associated infections pose a serious risk for patients, staff, and visitors and are a sev...
ABSTRACT Silver nanoparticles (AgNPs) are known for their broad-spectrum antibacterial properties, e...
A superior degree of functionality in materials can be expected, if two or more operational entities...
The extensive impact of antibiotic resistance has led to the exploration of new anti-bacterial modal...
Oxidative stress induced by reactive oxygen species (ROS) is one of the major toxicity mechanisms of...
Owing to its flexibility and high treatment efficiency, phototherapy is rapidly emerging for treatin...
Pathogenic microorganisms are gradually becoming resistant to antibiotics, thereby novel antimicrobi...
Understanding the mechanism of nanosilver-dependent antibacterial activity against microorganisms he...
Plasmonic nanoparticles can strongly interact with adjacent photosensitizer molecules, resulting in ...
Novel core/shell/shell SiO2/ZnO/Ag3PO4 nanoparticles (SZA‐NPs) were prepared through a facile reflux...
Here we describe the development of novel nanostructured coating systems with improved photocatalyti...
Antimicrobial photodynamic therapy (a-PDT) is a promising anti-infective technique for generation of...
A layer of silver nanoplates, specifically synthesized with the desired localized surface plasmon re...
Silver nanoparticles (Ag-NPs) have strong antimicrobial potential, which has been exploited in many ...
Healthcare-associated infections pose a serious risk for patients, staff, and visitors and are a sev...
Healthcare-associated infections pose a serious risk for patients, staff, and visitors and are a sev...
ABSTRACT Silver nanoparticles (AgNPs) are known for their broad-spectrum antibacterial properties, e...
A superior degree of functionality in materials can be expected, if two or more operational entities...
The extensive impact of antibiotic resistance has led to the exploration of new anti-bacterial modal...
Oxidative stress induced by reactive oxygen species (ROS) is one of the major toxicity mechanisms of...
Owing to its flexibility and high treatment efficiency, phototherapy is rapidly emerging for treatin...
Pathogenic microorganisms are gradually becoming resistant to antibiotics, thereby novel antimicrobi...
Understanding the mechanism of nanosilver-dependent antibacterial activity against microorganisms he...
Plasmonic nanoparticles can strongly interact with adjacent photosensitizer molecules, resulting in ...
Novel core/shell/shell SiO2/ZnO/Ag3PO4 nanoparticles (SZA‐NPs) were prepared through a facile reflux...
Here we describe the development of novel nanostructured coating systems with improved photocatalyti...
Antimicrobial photodynamic therapy (a-PDT) is a promising anti-infective technique for generation of...
A layer of silver nanoplates, specifically synthesized with the desired localized surface plasmon re...
Silver nanoparticles (Ag-NPs) have strong antimicrobial potential, which has been exploited in many ...
Healthcare-associated infections pose a serious risk for patients, staff, and visitors and are a sev...
Healthcare-associated infections pose a serious risk for patients, staff, and visitors and are a sev...
ABSTRACT Silver nanoparticles (AgNPs) are known for their broad-spectrum antibacterial properties, e...