The objective of this study is to investigate the effect of long-term static bending on the conductive characteristics of indium tin oxide (ITO) thin film in flexible optoelectronics. Two types of substrate are considered, namely ITO on polyethylene naphthalate (ITO/PEN) and ITO on polyethylene terephthalate (ITO/PET). Electrical properties of the ITO/PEN and ITO/PET sheets are measured in situ under static bending at various radii of curvature. Experimental results indicate that no significant change in electrical resistance of the ITO/PEN and ITO/PET sheets is found for compressive bending after 1000 h at a curvature radius of 10 mm or larger. However, the ITO/PEN and ITO/PET sheets are seriously damaged under a tensile bending of 10 mm r...
The increasing interest in thin flexible and bendable devices has led to a strong demand for mechani...
Indium tin oxide (ITO) is widely used for opto-electronic products such as organic light-emitting di...
Indium-tin oxide films are deposited by low plasma temperature RF sputtering on highly flexible modi...
The objective of this study is to investigate the effect of long-term static bending on the conducti...
The study is focused on the fundamental understanding of behaviors of polymer films coated with indi...
With the recent growing interest in flexible electronics, many studies are being conducted on flexib...
Stress-induced failure is a critical concern that influences the mechanical reliability of an indium...
The suitability of stacked thin films for next-generation display technology was analyzed based on t...
Indium-tin-oxide (ITO) is a transparent conducting material which is deposited as a thin film on gla...
[[abstract]]In this research, we studied the effect of deflection on the characteristics of an indiu...
This paper investigates the influence of film thickness on the electrical and mechanical properties ...
Designing and developing flexible electronics requires a thorough investigation of the substrates av...
Designing and developing flexible electronics requires a thorough investigation of the substrates av...
Fabrication of truly flexible optoelectronic devices, such as flexible displays and flexible photovo...
ITO film with low resistivity and high transmittance has certain drawbacks, such as the high process...
The increasing interest in thin flexible and bendable devices has led to a strong demand for mechani...
Indium tin oxide (ITO) is widely used for opto-electronic products such as organic light-emitting di...
Indium-tin oxide films are deposited by low plasma temperature RF sputtering on highly flexible modi...
The objective of this study is to investigate the effect of long-term static bending on the conducti...
The study is focused on the fundamental understanding of behaviors of polymer films coated with indi...
With the recent growing interest in flexible electronics, many studies are being conducted on flexib...
Stress-induced failure is a critical concern that influences the mechanical reliability of an indium...
The suitability of stacked thin films for next-generation display technology was analyzed based on t...
Indium-tin-oxide (ITO) is a transparent conducting material which is deposited as a thin film on gla...
[[abstract]]In this research, we studied the effect of deflection on the characteristics of an indiu...
This paper investigates the influence of film thickness on the electrical and mechanical properties ...
Designing and developing flexible electronics requires a thorough investigation of the substrates av...
Designing and developing flexible electronics requires a thorough investigation of the substrates av...
Fabrication of truly flexible optoelectronic devices, such as flexible displays and flexible photovo...
ITO film with low resistivity and high transmittance has certain drawbacks, such as the high process...
The increasing interest in thin flexible and bendable devices has led to a strong demand for mechani...
Indium tin oxide (ITO) is widely used for opto-electronic products such as organic light-emitting di...
Indium-tin oxide films are deposited by low plasma temperature RF sputtering on highly flexible modi...