The production of nontoxic, affordable, and efficient antibacterial surfaces is key to the well-being of our societies. In this aim, antibacterial thin films have been prepared using earth-abundant metals deposited using high-power impulse magnetron sputtering (HiPIMS). The sputtered FeOx, CuxO, and mixed CuxO-FeOx films exhibited fast bacterial inactivation properties under exposure to indoor light (340–720 nm) showing total bacterial inactivation within 180, 120, and 60 min, respectively. The photocatalytic mechanisms of these films were investigated, from the absorption of photons up to the bacteria’s fate, by means of ultrafast transient spectroscopy, flow cytometry, and malondialdehyde (MDA) quantification justifying the cell wall disr...
This review addresses catalytic/photocatalytic films under visible light inducing fast bacterial ina...
This review focuses on Cu/TiO2 sequentially sputtered and Cu-TiO2 co-sputtered catalytic/photocataly...
The first evidence for Cu-Ag (50%/50%) nanoparticulate hybrid coatings is presented leading to a com...
The production of nontoxic, affordable, and efficient antibacterial surfaces is key to the well-bein...
Photocatalytic antibacterial sol-gel coated substrates have been reported to kill bacteria under lig...
Introduction: The Cu polyester thin-sputtered layers on textile fabrics show an acceptable bacterial...
This study reports the significant mechanistic difference between binary-oxide antibacterial films w...
This review focuses on the acceleration of the bactericidal and fungicidal effects by uniform, adhes...
This study addresses the preparation of uniform, adhesive and robust thin Cu-polyethylene films (PE-...
This study reports the significant mechanistic difference between binary-oxide antibacterial films w...
Novel ultrathin TiO2-Cu nanoparticulate films sputtered by highly ionized pulsed plasma magnetron sp...
This review addresses the preparation of antibacterial 2D textile and thin polymer films and 3D surf...
Binary oxide semiconductors TiO2-ZrO2 and Cu-decorated TiO2-ZrO2 (TiO2-ZrO2-Cu) uniform films were s...
This study reports HIPIMS-sputtered samples of Cu-particulate films with currents at 6 and 60 amps l...
Bacterial inactivation by TiO2, Cu and TiO2/Cu DC-magnetron sputtered thin films was systematically ...
This review addresses catalytic/photocatalytic films under visible light inducing fast bacterial ina...
This review focuses on Cu/TiO2 sequentially sputtered and Cu-TiO2 co-sputtered catalytic/photocataly...
The first evidence for Cu-Ag (50%/50%) nanoparticulate hybrid coatings is presented leading to a com...
The production of nontoxic, affordable, and efficient antibacterial surfaces is key to the well-bein...
Photocatalytic antibacterial sol-gel coated substrates have been reported to kill bacteria under lig...
Introduction: The Cu polyester thin-sputtered layers on textile fabrics show an acceptable bacterial...
This study reports the significant mechanistic difference between binary-oxide antibacterial films w...
This review focuses on the acceleration of the bactericidal and fungicidal effects by uniform, adhes...
This study addresses the preparation of uniform, adhesive and robust thin Cu-polyethylene films (PE-...
This study reports the significant mechanistic difference between binary-oxide antibacterial films w...
Novel ultrathin TiO2-Cu nanoparticulate films sputtered by highly ionized pulsed plasma magnetron sp...
This review addresses the preparation of antibacterial 2D textile and thin polymer films and 3D surf...
Binary oxide semiconductors TiO2-ZrO2 and Cu-decorated TiO2-ZrO2 (TiO2-ZrO2-Cu) uniform films were s...
This study reports HIPIMS-sputtered samples of Cu-particulate films with currents at 6 and 60 amps l...
Bacterial inactivation by TiO2, Cu and TiO2/Cu DC-magnetron sputtered thin films was systematically ...
This review addresses catalytic/photocatalytic films under visible light inducing fast bacterial ina...
This review focuses on Cu/TiO2 sequentially sputtered and Cu-TiO2 co-sputtered catalytic/photocataly...
The first evidence for Cu-Ag (50%/50%) nanoparticulate hybrid coatings is presented leading to a com...