The ability to pattern highly conductive features on paper substrates is critically important for applications in radio frequency identification (RFID) tags, displays, sensors, printed electronics, and diagnostics. Ink-jet printing particle-free reactive silver inks is an additive, material efficient and versatile strategy for fabrication of highly conductive patterns; however, the intrinsic wetting properties of cellulose based papers are not suitable to serve as substrates for this process. This study reports one-step and practical modification of the surface of paper substrates using industrially available materials. The paper substrates were dip-coated with films of hydrocarbon and fluorocarbon based polymeric resins. Ink-jet printing p...
A one-step process to fabricate conductive features on flexible polymer substrates by inkjet printin...
A one-step process to fabricate conductive features on flexible polymer substrates by inkjet printin...
A one-step process to fabricate conductive features on flexible polymer substrates by inkjet printin...
The ability to pattern highly conductive features on paper substrates is critically important for ap...
The use of omniphobic “fluoroalkylated paper” as a substrate for inkjet printing of aqueous inks tha...
Printed electronics constitute a class of electronic devices that are made by printing or etching co...
In this study, we develop a simple and low-cost surface wettability patterning based on soft lithogr...
The industrial sector of flexible printed electronics has shown a dynamic growth in the last decades...
The industrial sector of flexible printed electronics has shown a dynamic growth in the last decades...
The direct inkjet printing of conductive silver and/or carbon suspension inks on flexible substrates...
This paper describes research into three different but interrelated technologies that can add value ...
peer-reviewedThe direct inkjet printing of conductive silver and/or carbon suspension inks on flexib...
AbstractThis paper investigates the effect of surface wettability on the cross-sectional profiles of...
A new manufacturing paradigm may lower the cost and environmental impact of existing products, as we...
A novel process utilizing specialized continuous inkjet (CIJ) printing technology and innovative con...
A one-step process to fabricate conductive features on flexible polymer substrates by inkjet printin...
A one-step process to fabricate conductive features on flexible polymer substrates by inkjet printin...
A one-step process to fabricate conductive features on flexible polymer substrates by inkjet printin...
The ability to pattern highly conductive features on paper substrates is critically important for ap...
The use of omniphobic “fluoroalkylated paper” as a substrate for inkjet printing of aqueous inks tha...
Printed electronics constitute a class of electronic devices that are made by printing or etching co...
In this study, we develop a simple and low-cost surface wettability patterning based on soft lithogr...
The industrial sector of flexible printed electronics has shown a dynamic growth in the last decades...
The industrial sector of flexible printed electronics has shown a dynamic growth in the last decades...
The direct inkjet printing of conductive silver and/or carbon suspension inks on flexible substrates...
This paper describes research into three different but interrelated technologies that can add value ...
peer-reviewedThe direct inkjet printing of conductive silver and/or carbon suspension inks on flexib...
AbstractThis paper investigates the effect of surface wettability on the cross-sectional profiles of...
A new manufacturing paradigm may lower the cost and environmental impact of existing products, as we...
A novel process utilizing specialized continuous inkjet (CIJ) printing technology and innovative con...
A one-step process to fabricate conductive features on flexible polymer substrates by inkjet printin...
A one-step process to fabricate conductive features on flexible polymer substrates by inkjet printin...
A one-step process to fabricate conductive features on flexible polymer substrates by inkjet printin...