Tin doped indium oxide (ITO) has been directly deposited onto a variety of flexible materials by a reactive sputtering technique that utilises a remotely generated, high density plasma. This technique, known as high target utilisation sputtering (HiTUS), allows for the high rate deposition of good quality ITO films onto polymeric materials with no substrate heating or post deposition annealing. Coatings with a resistivity of 3.8 ×10−4 Ωcm and an average visible transmission of greater than 90% have been deposited onto PEN and PET substrate materials at a deposition rate of 70 nm/min. The electrical and optical properties are retained when the coatings are flexed through a 1.0 cm bend radius, making them of interest for flexible display a...
ITO thin films were deposited on flexible fluorinated ethylene propylene (FEP) substrates by pulsed ...
ITO thin films were deposited on flexible fluorinated ethylene propylene (FEP) substrates by pulsed ...
Ultrathin glass is a new flexible material. It is distinguished from its polymer counterparts by a c...
Indium tin oxide (ITO) thin films with a specific resistivity of 3.5 × 10− 4 Ω cm and average visibl...
Tin-doped indium oxide (ITO) films were deposited on the unheated alkali-free glass substrates (AN10...
High target utilisation sputtering (HiTUS) is a patented remote plasma sputtering technique for the ...
Transparent conducting tin-doped indium oxide (ITO) thin films were deposited on Teflon and glass su...
High target utilisation sputtering (HiTUS) is a patented remote plasma sputtering technique for the ...
Indium tin oxide (ITO), sometimes referred to as tin doped indium oxide, is a widely used transparen...
Indium tin oxide (ITO) is used as transparent front contact layer in thin film solar cell systems an...
A DC reactive sputtering process for thin transparent conducting films of indium tin oxide was devel...
Detailed information on the deposition technology of the low-resistive ITO-films in oxygen-containin...
Transparent and conducting indium tin oxide (ITO) thin films were deposited on different substrates ...
Indium tin oxide (ITO) is one of the important materials used as transparent conducting oxide (TCO) ...
High target utilisation sputtering (HiTUS) is a patented remote plasma sputtering technique for the ...
ITO thin films were deposited on flexible fluorinated ethylene propylene (FEP) substrates by pulsed ...
ITO thin films were deposited on flexible fluorinated ethylene propylene (FEP) substrates by pulsed ...
Ultrathin glass is a new flexible material. It is distinguished from its polymer counterparts by a c...
Indium tin oxide (ITO) thin films with a specific resistivity of 3.5 × 10− 4 Ω cm and average visibl...
Tin-doped indium oxide (ITO) films were deposited on the unheated alkali-free glass substrates (AN10...
High target utilisation sputtering (HiTUS) is a patented remote plasma sputtering technique for the ...
Transparent conducting tin-doped indium oxide (ITO) thin films were deposited on Teflon and glass su...
High target utilisation sputtering (HiTUS) is a patented remote plasma sputtering technique for the ...
Indium tin oxide (ITO), sometimes referred to as tin doped indium oxide, is a widely used transparen...
Indium tin oxide (ITO) is used as transparent front contact layer in thin film solar cell systems an...
A DC reactive sputtering process for thin transparent conducting films of indium tin oxide was devel...
Detailed information on the deposition technology of the low-resistive ITO-films in oxygen-containin...
Transparent and conducting indium tin oxide (ITO) thin films were deposited on different substrates ...
Indium tin oxide (ITO) is one of the important materials used as transparent conducting oxide (TCO) ...
High target utilisation sputtering (HiTUS) is a patented remote plasma sputtering technique for the ...
ITO thin films were deposited on flexible fluorinated ethylene propylene (FEP) substrates by pulsed ...
ITO thin films were deposited on flexible fluorinated ethylene propylene (FEP) substrates by pulsed ...
Ultrathin glass is a new flexible material. It is distinguished from its polymer counterparts by a c...