Biofilm formation has been pointed as a major concern in different industrial applications, namely on biomedical implants and surgical instruments, which has prompted the development of new strategies for production of efficient antimicrobial surfaces. In this work, nano âgalvanic couples were created to enhance the antibacterial properties of silver, by embedding it into amorphous carbon (a-C) matrix. The developed Ag/a-C nanocomposite coatings, deposited by magnetron sputtering, revealed an outstanding antibacterial activity against S.epidermidis, promoting a total reduction in biofilm formation with no bacteria counts in all dilution. The open circuit potential (OCP) tests in 0.9% NaCl confirmed that a-C shows a positive \OCP\ value, in ...
Nowadays, antibacterial properties are becoming a viable feature to be introduced in biomaterials du...
Non-woven textile materials with antimicrobial properties are of high demands for applications rangi...
The antibacterial ability of in situ prepared nanometer-sized silver particles, immobilized in agar-...
The antibacterial properties of materials developed for medical devices with embedded silver nanopar...
The antibacterial properties of materials developed for medical devices with embedded silver nanopar...
The antibacterial properties of materials developed for medical devices with embedded silver nanopar...
Hospital-acquired infections are responsible for a significant part of morbidity and mor-tality. Amo...
One of the leading causes of failure for any bone implant is implant-associated infections. The impl...
International audienceA plasma-deposited coating, containing silver nanoparticles embedded in an org...
A new type of silver nanoparticles containing coating based on inorganic-organic hybrid materials ha...
In this study, 0.5, 1, 3, and 5 % nano-silver containing hydroxyapatite coatings (nAg-HA) on a Ti6Al...
A growing number of severe infections are related to antibiotic-resistant bacteria, therefore, in re...
In this study, 0.5, 1, 3, and 5 % nano-silver containing hydroxyapatite coatings (nAg-HA) on a Ti6Al...
a-C:Ag coatings (1.2–23.4 at.% of Ag) were deposited using magnetron sputtering. Ag nanoparticles ap...
In the current work, a new antibacterial bandage was proposed where diamond-like carbon with silver ...
Nowadays, antibacterial properties are becoming a viable feature to be introduced in biomaterials du...
Non-woven textile materials with antimicrobial properties are of high demands for applications rangi...
The antibacterial ability of in situ prepared nanometer-sized silver particles, immobilized in agar-...
The antibacterial properties of materials developed for medical devices with embedded silver nanopar...
The antibacterial properties of materials developed for medical devices with embedded silver nanopar...
The antibacterial properties of materials developed for medical devices with embedded silver nanopar...
Hospital-acquired infections are responsible for a significant part of morbidity and mor-tality. Amo...
One of the leading causes of failure for any bone implant is implant-associated infections. The impl...
International audienceA plasma-deposited coating, containing silver nanoparticles embedded in an org...
A new type of silver nanoparticles containing coating based on inorganic-organic hybrid materials ha...
In this study, 0.5, 1, 3, and 5 % nano-silver containing hydroxyapatite coatings (nAg-HA) on a Ti6Al...
A growing number of severe infections are related to antibiotic-resistant bacteria, therefore, in re...
In this study, 0.5, 1, 3, and 5 % nano-silver containing hydroxyapatite coatings (nAg-HA) on a Ti6Al...
a-C:Ag coatings (1.2–23.4 at.% of Ag) were deposited using magnetron sputtering. Ag nanoparticles ap...
In the current work, a new antibacterial bandage was proposed where diamond-like carbon with silver ...
Nowadays, antibacterial properties are becoming a viable feature to be introduced in biomaterials du...
Non-woven textile materials with antimicrobial properties are of high demands for applications rangi...
The antibacterial ability of in situ prepared nanometer-sized silver particles, immobilized in agar-...