Nanomaterials have displayed promising potential as antimicrobial materials. However, the antimicrobial mechanism owing to surface effects, where the emission of harmful substances such as metallic ions and reactive oxygen species is not required, is still poorly understood. It is important to figure out relationship between the physical properties and antimicrobial activity based on deep understanding of antimicrobial mechanism for their safe and effective applications. Here, we show that the work function is representative of the surface effect leading to antimicrobial activity, which originates from the electronic states of the surface. We investigated the antimicrobial activity and the work function of nanoporous Au-Pt and Au without th...
The interaction between nano-objects and extended solid surfaces is of paramount importance in the c...
In this chapter, experimental and theoretical studies on surface segregation in Ag-Au systems, inclu...
It has been demonstrated that Ag-TiO2 nanocomposite coatings with excellent antimicrobial activity a...
Nanoporous Au exhibits high antibacterial activity (AA) without releasing reactive oxygen species or...
Conventional metallic antibacterial materials release metal ions and reactive oxygen species (ROS) f...
Surface properties of nanoparticles (NPs) could greatly influence their biomedical efficacy. This pa...
Contact-based antimicrobials, as antibiotic-free technologies that use non-specific interactions wit...
Contact-based antimicrobials, as antibiotic-free technologies that use non-specific interactions wit...
The antimicrobial action of gold depends on different factors including its oxidation state in the i...
BACKGROUND: Silver (Ag) has been long known to be a strong antimicrobial agent and has been used as ...
Biofilms are the state microorganisms on surfaces which negatively impact many of processes taking p...
Silver nanoparticles constitute a very promising approach for the development of new antimicrobial s...
Nanomaterial has been employed as an alternative to antibiotics, diagnostic tools and delivery of th...
Antimicrobial resistance (AMR) is one of the biggest threats to the environment and health. AMR rapi...
Multiple drug-resistant bacteria are a severe and growing public health concern. Because relatively ...
The interaction between nano-objects and extended solid surfaces is of paramount importance in the c...
In this chapter, experimental and theoretical studies on surface segregation in Ag-Au systems, inclu...
It has been demonstrated that Ag-TiO2 nanocomposite coatings with excellent antimicrobial activity a...
Nanoporous Au exhibits high antibacterial activity (AA) without releasing reactive oxygen species or...
Conventional metallic antibacterial materials release metal ions and reactive oxygen species (ROS) f...
Surface properties of nanoparticles (NPs) could greatly influence their biomedical efficacy. This pa...
Contact-based antimicrobials, as antibiotic-free technologies that use non-specific interactions wit...
Contact-based antimicrobials, as antibiotic-free technologies that use non-specific interactions wit...
The antimicrobial action of gold depends on different factors including its oxidation state in the i...
BACKGROUND: Silver (Ag) has been long known to be a strong antimicrobial agent and has been used as ...
Biofilms are the state microorganisms on surfaces which negatively impact many of processes taking p...
Silver nanoparticles constitute a very promising approach for the development of new antimicrobial s...
Nanomaterial has been employed as an alternative to antibiotics, diagnostic tools and delivery of th...
Antimicrobial resistance (AMR) is one of the biggest threats to the environment and health. AMR rapi...
Multiple drug-resistant bacteria are a severe and growing public health concern. Because relatively ...
The interaction between nano-objects and extended solid surfaces is of paramount importance in the c...
In this chapter, experimental and theoretical studies on surface segregation in Ag-Au systems, inclu...
It has been demonstrated that Ag-TiO2 nanocomposite coatings with excellent antimicrobial activity a...