We prepared TiO2 nanotubes (NT) on commercially pure titanium (cp-Ti) substrate by plasma electrolyte oxidation and adapted magnetron sputtering for incorporation of Ag-nanoparticles (Ag-NPs) onto the nanotubes (Ag-NPs/TiO2 nanotube). Power input to the Ag target per unit time was varied (5, 10, 15 W/cm2) to fabricate different shapes of Agnanoparticles onto the nanotubes while net energy input was fixed by maintaining a constant total sputter time (30, 15, 10 s, respectively). For investigation of experimental samples' characteristics, FE-SEM, TEM, EDS, XRD, XPS, SPM analysis and contact angles measurement was carried out. Through these characterization, plasma engineered Ag-NPs was successfully formed on/in the entire nanotube structure. ...
Titanium oxide nanotube arrays are extremely promising materials for localized drug delivery in orth...
Titanium oxide nanotube arrays are extremely promising materials for localized drug delivery in orth...
Titanium oxide nanotube arrays are extremely promising materials for localized drug delivery in orth...
In this study, Ag is electron-beam evaporated to modify the topography of anodic TiO2 nanotubes of d...
We investigated whether a silver coating on an anodic oxidized titania (TiO2) nanotube surface would...
The nanotubular arrays of titanium dioxide (TiO2 NTs) have recently received considerable interest f...
To reduce the risk of infection, many researchers have applied antibacterial silver to TiO2 implant ...
Enhanced antibacterial properties of nanomaterials such as TiO2 nanotubes (TNTs) and silver nanopart...
It is important to develop functional transmucosal implant surfaces that reduce the number of initia...
It is important to develop functional transmucosal implant surfaces that reduce the number of initia...
Additive manufacturing (3D printing) has enabled fabrication of geometrically complex and fully inte...
Additive manufacturing (3D printing) has enabled fabrication of geometrically complex and fully inte...
Additive manufacturing (3D printing) has enabled fabrication of geometrically complex and fully inte...
Titanium oxide nanotube arrays are extremely promising materials for localized drug delivery in orth...
Titanium oxide nanotube arrays are extremely promising materials for localized drug delivery in orth...
Titanium oxide nanotube arrays are extremely promising materials for localized drug delivery in orth...
Titanium oxide nanotube arrays are extremely promising materials for localized drug delivery in orth...
Titanium oxide nanotube arrays are extremely promising materials for localized drug delivery in orth...
In this study, Ag is electron-beam evaporated to modify the topography of anodic TiO2 nanotubes of d...
We investigated whether a silver coating on an anodic oxidized titania (TiO2) nanotube surface would...
The nanotubular arrays of titanium dioxide (TiO2 NTs) have recently received considerable interest f...
To reduce the risk of infection, many researchers have applied antibacterial silver to TiO2 implant ...
Enhanced antibacterial properties of nanomaterials such as TiO2 nanotubes (TNTs) and silver nanopart...
It is important to develop functional transmucosal implant surfaces that reduce the number of initia...
It is important to develop functional transmucosal implant surfaces that reduce the number of initia...
Additive manufacturing (3D printing) has enabled fabrication of geometrically complex and fully inte...
Additive manufacturing (3D printing) has enabled fabrication of geometrically complex and fully inte...
Additive manufacturing (3D printing) has enabled fabrication of geometrically complex and fully inte...
Titanium oxide nanotube arrays are extremely promising materials for localized drug delivery in orth...
Titanium oxide nanotube arrays are extremely promising materials for localized drug delivery in orth...
Titanium oxide nanotube arrays are extremely promising materials for localized drug delivery in orth...
Titanium oxide nanotube arrays are extremely promising materials for localized drug delivery in orth...
Titanium oxide nanotube arrays are extremely promising materials for localized drug delivery in orth...