Zinc-tin oxide (ZTO) is widely invoked as a promising indium and gallium-free alternative for amorphous oxide semiconductor based thin-film transistors (TFTs). The main bottleneck of this semiconductor material compared to mainstream indium-gallium-zinc oxide (IGZO) is centered in the larger processing temperatures required to achieve acceptable performance (>300 °C), not compatible with low-cost flexible substrates. This work reports for the first time flexible amorphous-ZTO TFTs processed at a maximum temperature of 180 °C. Different aspects are explored to obtain performance levels comparable to IGZO devices at these low processing temperatures, such as hydrogen incorporation during ZTO sputtering and integration with a high-κ multilayer...
Amorphous indium zinc oxide (IZO) thin films were deposited at different temperatures, by atomic lay...
The growing range of applications of large-area electronics (LAE) in the last years is starting to r...
Due to their high charge carrier mobility, optical transparency and mechanical flexibility, thin-fil...
Zinc-tin oxide (ZTO) is widely invoked as a promising indium and gallium-free alternative for amorph...
Printed electronics desire to lower the cost of electronics manufacturing by using cheaper and inexp...
Printed electronics desire to lower the cost of electronics manufacturing by using cheaper and inexp...
Part 16: Flexible and Transparent Oxide ElectronicsInternational audienceThin-film transistors (TFTs...
Graduation date: 2008In recent years, a new class of high-performance thin-film transistors (TFTs) h...
Solution-processed thin film transistors (TFTs) used in flexible electronics require them to be fabr...
Flexible and conformable devices operated in contact with the human body, or fabricated using cost e...
Bottom-gate-type oxide thin-film transistors (TFTs) on flexible plastic substrates have been fabrica...
Most of the transistors are based on inorganic semiconductors such as the ubiquitous silicon (Si). N...
Amorphous indium zinc oxide (IZO) thin films were deposited at different temperatures, by atomic lay...
Thin Film Transistors (TFTs) based on amorphous indium gallium zinc oxide (α-IGZO) were fabricated b...
The internet of things or foldable phones call for a variety of flexible sensor conditioning and tra...
Amorphous indium zinc oxide (IZO) thin films were deposited at different temperatures, by atomic lay...
The growing range of applications of large-area electronics (LAE) in the last years is starting to r...
Due to their high charge carrier mobility, optical transparency and mechanical flexibility, thin-fil...
Zinc-tin oxide (ZTO) is widely invoked as a promising indium and gallium-free alternative for amorph...
Printed electronics desire to lower the cost of electronics manufacturing by using cheaper and inexp...
Printed electronics desire to lower the cost of electronics manufacturing by using cheaper and inexp...
Part 16: Flexible and Transparent Oxide ElectronicsInternational audienceThin-film transistors (TFTs...
Graduation date: 2008In recent years, a new class of high-performance thin-film transistors (TFTs) h...
Solution-processed thin film transistors (TFTs) used in flexible electronics require them to be fabr...
Flexible and conformable devices operated in contact with the human body, or fabricated using cost e...
Bottom-gate-type oxide thin-film transistors (TFTs) on flexible plastic substrates have been fabrica...
Most of the transistors are based on inorganic semiconductors such as the ubiquitous silicon (Si). N...
Amorphous indium zinc oxide (IZO) thin films were deposited at different temperatures, by atomic lay...
Thin Film Transistors (TFTs) based on amorphous indium gallium zinc oxide (α-IGZO) were fabricated b...
The internet of things or foldable phones call for a variety of flexible sensor conditioning and tra...
Amorphous indium zinc oxide (IZO) thin films were deposited at different temperatures, by atomic lay...
The growing range of applications of large-area electronics (LAE) in the last years is starting to r...
Due to their high charge carrier mobility, optical transparency and mechanical flexibility, thin-fil...