Abstract Metal oxide thin-films transistors (TFTs) produced from solution-based printing techniques can lead to large-area electronics with low cost. However, the performance of current printed devices is inferior to those from vacuum-based methods due to poor film uniformity induced by the “coffee-ring” effect. Here, we report a novel approach to print high-performance indium tin oxide (ITO)-based TFTs and logic inverters by taking advantage of such notorious effect. ITO has high electrical conductivity and is generally used as an electrode material. However, by reducing the film thickness down to nanometers scale, the carrier concentration of ITO can be effectively reduced to enable new applications as active channels in transistors. The ...
As demands for high pixel densities and wearable forms of displays increase, high-resolution printin...
We successfully fabricated high performance amorphous tin-doped indium oxide (a-ITO) thin film trans...
Lately, printed oxide electronics have advanced in the performance and low-temperature solution proc...
Ability to digitally control the amount of a deposited material is one of the many advantages of ink...
Ability to digitally control the amount of a deposited material is one of the many advantages of ink...
InSnO (ITO) thin-film transistors (TFTs) attract much attention in fields of displays and low-cost i...
The deposition of a thin and uniform dielectric layer is required for high performance printed capac...
The convergence of printing and microelectronic technologies, often called printed electronics, is b...
The convergence of printing and microelectronic technologies, often called printed electronics, is b...
© 2019 You LiangCurrent design and fabrication methodologies for electronic circuits are both time c...
Over the last decade, novel approaches to explore low voltage flexible devices and low power flexibl...
Over the last decade, novel approaches to explore low voltage flexible devices and low power flexibl...
Critical prerequisites for solution-processed/printed field-effect transistors (FETs) and logics are...
Besides the metal oxide thin film transistors (TFTs) in flat-panel displays that are fabricated usin...
Critical prerequisites for solution-processed/printed field-effect transistors (FETs) and logics are...
As demands for high pixel densities and wearable forms of displays increase, high-resolution printin...
We successfully fabricated high performance amorphous tin-doped indium oxide (a-ITO) thin film trans...
Lately, printed oxide electronics have advanced in the performance and low-temperature solution proc...
Ability to digitally control the amount of a deposited material is one of the many advantages of ink...
Ability to digitally control the amount of a deposited material is one of the many advantages of ink...
InSnO (ITO) thin-film transistors (TFTs) attract much attention in fields of displays and low-cost i...
The deposition of a thin and uniform dielectric layer is required for high performance printed capac...
The convergence of printing and microelectronic technologies, often called printed electronics, is b...
The convergence of printing and microelectronic technologies, often called printed electronics, is b...
© 2019 You LiangCurrent design and fabrication methodologies for electronic circuits are both time c...
Over the last decade, novel approaches to explore low voltage flexible devices and low power flexibl...
Over the last decade, novel approaches to explore low voltage flexible devices and low power flexibl...
Critical prerequisites for solution-processed/printed field-effect transistors (FETs) and logics are...
Besides the metal oxide thin film transistors (TFTs) in flat-panel displays that are fabricated usin...
Critical prerequisites for solution-processed/printed field-effect transistors (FETs) and logics are...
As demands for high pixel densities and wearable forms of displays increase, high-resolution printin...
We successfully fabricated high performance amorphous tin-doped indium oxide (a-ITO) thin film trans...
Lately, printed oxide electronics have advanced in the performance and low-temperature solution proc...