The article reports on low-temperature high-rate sputtering of hydrophilic transparent TiO2thin films using dc dual magnetron (DM) sputtering in Ar + O2mixture on unheated glass substrates. The DM was operated in a bipolar asymmetric mode and was equipped with Ti(99.5) targets of 50 mm in diameter. The substrate surface temperature Tsurfmeasured by a thermostrip was less than 180 °C for all experiments. The effect of the repetition frequency frwas investigated in detail. It was found that the increase of frfrom 100 to 350 kHz leads to (a) an improvement of the efficiency of the deposition process that results in a significant increase of the deposition rate aDof sputtered TiO2films and (b) a decrease of peak pulse voltage and sustaining of ...
[[abstract]]Titanium dioxide films prepared by magnetron sputtering with titanium dioxide targets, r...
Titanium dioxide (TiO2) films were deposited on unheated non-alkali glass substrates by reactive mid...
Titanium oxide (TiO2) thin films have been deposited onto highly cleaned soda lime glass substrates...
The article reports on low-temperature high-rate sputtering of hydrophilic transparent TiO2thin film...
AbstractThe article reports on low-temperature high-rate sputtering of hydrophilic transparent TiO2t...
The mid-frequency (20-350 kHz) pulsed magnetron sputtering process has been reported as an enabling ...
The state of the art to obtain crystalline TiO2 layers by vacuum deposition methods is the use of el...
This article reports on the photocatalytic activity of transparent crystalline TiO2 films deposited ...
Titanium dioxide (TiO2) films were deposited on unheated non-alkali glass substrates by reactive mid...
In the field of magnetron sputtering, it is well established that mid-frequency (20–350 kHz) pulsed ...
AbstractITO films were deposited on glass by dc magnetron sputtering. The ITO films have high transm...
TiO2 thin films were deposited on unheated silicon wafers (100) and glass slides by a pulsed DC reac...
AbstractTiO2 thin films were deposited by DC reactive magnetron sputtering technique on silicon wafe...
Titanium dioxide (TiO2) films were deposited by the following two different reactive magnetron sputt...
We performed a comprehensive study on the electrochromism in TiO2 thin films made by reactive DC mag...
[[abstract]]Titanium dioxide films prepared by magnetron sputtering with titanium dioxide targets, r...
Titanium dioxide (TiO2) films were deposited on unheated non-alkali glass substrates by reactive mid...
Titanium oxide (TiO2) thin films have been deposited onto highly cleaned soda lime glass substrates...
The article reports on low-temperature high-rate sputtering of hydrophilic transparent TiO2thin film...
AbstractThe article reports on low-temperature high-rate sputtering of hydrophilic transparent TiO2t...
The mid-frequency (20-350 kHz) pulsed magnetron sputtering process has been reported as an enabling ...
The state of the art to obtain crystalline TiO2 layers by vacuum deposition methods is the use of el...
This article reports on the photocatalytic activity of transparent crystalline TiO2 films deposited ...
Titanium dioxide (TiO2) films were deposited on unheated non-alkali glass substrates by reactive mid...
In the field of magnetron sputtering, it is well established that mid-frequency (20–350 kHz) pulsed ...
AbstractITO films were deposited on glass by dc magnetron sputtering. The ITO films have high transm...
TiO2 thin films were deposited on unheated silicon wafers (100) and glass slides by a pulsed DC reac...
AbstractTiO2 thin films were deposited by DC reactive magnetron sputtering technique on silicon wafe...
Titanium dioxide (TiO2) films were deposited by the following two different reactive magnetron sputt...
We performed a comprehensive study on the electrochromism in TiO2 thin films made by reactive DC mag...
[[abstract]]Titanium dioxide films prepared by magnetron sputtering with titanium dioxide targets, r...
Titanium dioxide (TiO2) films were deposited on unheated non-alkali glass substrates by reactive mid...
Titanium oxide (TiO2) thin films have been deposited onto highly cleaned soda lime glass substrates...