This work reports the synthesis and characterization of silica nanocapsules with biologically active com pounds 2 mercaptobenzothiazole and 4,5 dichloro 2 octyl 4 isothiazolin 3 one. The resulting particles were characterized by scanning electron microscopy, thermogravimetry and adsorption desorption isotherms of N2. The antibacterial activity was assessed for both nanocapsules dispersed in solution as well as incorporated in coating systems, using a recombinant bioluminescent Escherichia coli expressing the luxCDABE genes from the marine bioluminescent bacterium Aliivibrio fischeri. The decrease in light emission of the bacterial model, indicative as decrease of metabolic activity, was directly correlated with the level of biocide detect...
The amelioration of biofouling in industrial processing equipment is critical for performance and re...
Biofouling is the undesired biofilm formation on surfaces at a liquid interface that interferes with...
In this project, native and functionalised mesoporous silica nanoparticles (MSNs) are synthesised an...
In the attempt of satisfying the quest for new antifouling products tailored for applications on Cul...
In cultural heritage field, significant research efforts have been recently made to improve the effi...
The need for antibacterial coatings is increasing day by day. In this study, coating materials that ...
In the last decade many commercial biocides were gradually banned for toxicity. This work reports, f...
Biofilm formation is a strategy that bacteria use in order to survive in hostile environments, causi...
Application of mesoporous silica nanoparticles (MSNs) as antifouling/antibacterial carriers is limit...
The application of nano-structured compounds has been increasing rapidly in recent years, in several...
Nanoparticulate delivery of biocides has the potential to decrease levels of exposure to non- target...
Application of mesoporous silica nanoparticles (MSNs) as antifouling/antibacterial carriers is limit...
In the last decade, worldwide research has focused on innovative natural biocides and the developmen...
The amelioration of biofouling in industrial processing equipment is critical for performance and re...
Biofouling is the undesired biofilm formation on surfaces at a liquid interface that interferes with...
In this project, native and functionalised mesoporous silica nanoparticles (MSNs) are synthesised an...
In the attempt of satisfying the quest for new antifouling products tailored for applications on Cul...
In cultural heritage field, significant research efforts have been recently made to improve the effi...
The need for antibacterial coatings is increasing day by day. In this study, coating materials that ...
In the last decade many commercial biocides were gradually banned for toxicity. This work reports, f...
Biofilm formation is a strategy that bacteria use in order to survive in hostile environments, causi...
Application of mesoporous silica nanoparticles (MSNs) as antifouling/antibacterial carriers is limit...
The application of nano-structured compounds has been increasing rapidly in recent years, in several...
Nanoparticulate delivery of biocides has the potential to decrease levels of exposure to non- target...
Application of mesoporous silica nanoparticles (MSNs) as antifouling/antibacterial carriers is limit...
In the last decade, worldwide research has focused on innovative natural biocides and the developmen...
The amelioration of biofouling in industrial processing equipment is critical for performance and re...
Biofouling is the undesired biofilm formation on surfaces at a liquid interface that interferes with...
In this project, native and functionalised mesoporous silica nanoparticles (MSNs) are synthesised an...