Paper-based capacitive touch pads can be fabricated utilizing high-concentration silver nanowire inks needle-printed directly onto paper substrates through a 2D programmable platform. Post deposition, silver nanowire tracks can be photonically sintered using a camera flash to reduce sheet resistance similar to thermal sintering approaches. Touch pad sensors on a variety of paper substrates can be achieved with optimized silver nanowire tracks. Rolling and folding trials, which yielded only modest changes in capacitance and no loss of function, coupled with touch pad functionality on curved surfaces, suggest sufficient flexibility and durability for paper substrate touch pads to be used in diverse applications. A simplified model to predict ...
Silver nanowires (AgNWs) have inspired many research interests due to their better properties in opt...
Silver nanowire networks emerged recently as a remarkable substitute for indium tin oxide (ITO) tran...
We present a technique for creating multi-key conductive ink touch user interfaces that can be print...
Paper-based capacitive touch pads can be fabricated utilizing high-concentration silver nanowire ink...
This paper describes a new type of paper-based piezoelectric touch pad integrating zinc oxide nanowi...
International audienceTransparent flexible electrodes made of metallic nanowires, and in particular ...
We propose a fabrication process for extremely robust and easily patternable silver nanowire (AgNW) ...
Metallized paper is patterned to create touch pads of arrayed buttons that are sensitive to contact ...
Silver nanowire (AgNW) networks are considered to be promising structures for use as flexible transp...
Transparent microelectrodes with high bendability are necessary to develop lightweight, small electr...
A healable transparent capacitive touch screen sensor has been fabricated based on a healable silver...
Silver nanowire (AgNW) films have been shown to have transparent and conductive properties suitable ...
There is a strong demand for flexible user interface technology with a desired size and shape to mak...
A capacitive-type touch screen panel (TSP) composed of silver nanowire (AgNW) crossing electrodes an...
Silver nanowire (AgNW) networks are considered to be promising structures for use as flexible transp...
Silver nanowires (AgNWs) have inspired many research interests due to their better properties in opt...
Silver nanowire networks emerged recently as a remarkable substitute for indium tin oxide (ITO) tran...
We present a technique for creating multi-key conductive ink touch user interfaces that can be print...
Paper-based capacitive touch pads can be fabricated utilizing high-concentration silver nanowire ink...
This paper describes a new type of paper-based piezoelectric touch pad integrating zinc oxide nanowi...
International audienceTransparent flexible electrodes made of metallic nanowires, and in particular ...
We propose a fabrication process for extremely robust and easily patternable silver nanowire (AgNW) ...
Metallized paper is patterned to create touch pads of arrayed buttons that are sensitive to contact ...
Silver nanowire (AgNW) networks are considered to be promising structures for use as flexible transp...
Transparent microelectrodes with high bendability are necessary to develop lightweight, small electr...
A healable transparent capacitive touch screen sensor has been fabricated based on a healable silver...
Silver nanowire (AgNW) films have been shown to have transparent and conductive properties suitable ...
There is a strong demand for flexible user interface technology with a desired size and shape to mak...
A capacitive-type touch screen panel (TSP) composed of silver nanowire (AgNW) crossing electrodes an...
Silver nanowire (AgNW) networks are considered to be promising structures for use as flexible transp...
Silver nanowires (AgNWs) have inspired many research interests due to their better properties in opt...
Silver nanowire networks emerged recently as a remarkable substitute for indium tin oxide (ITO) tran...
We present a technique for creating multi-key conductive ink touch user interfaces that can be print...