We demonstrate a combined printing process utilizing inkjet printing of silver electrodes and solid-ink technology for printing hydrophobic wax barriers for fabricating paper microfluidic devices with integrated electrodes. Optimized printing parameters are given for achieving conducting silver lines on the top of macroporous chromatography paper down to 250 mu m-300 mu m resolution. Electrical characterization and wicking experiments demonstrate that the printed silver patterns are simultaneously conductive and porous enough to allow reliable capillary wicking across the electrodes. The combined wax and silver printing method is used for fabrication of paper microfluidic isoelectric focusing devices for separation and concentration of prot...
Paper (and other cellulose-based materials such as cotton thread and fabrics) are underexploited as ...
This dissertation examines the direct printing of conductive inks on polymeric substrates for applic...
Printed electronics (PE) technology shows huge promise for the realisation of low-cost and flexible ...
We demonstrate a combined printing process utilizing inkjet printing of silver electrodes and solid-...
We demonstrate a combined printing process utilizing inkjet printing of silver electrodes and solid-...
Research done on paper based microfluidic has been escalating since 2007 as paper is because attract...
This paper reports a customized silver ink and its inkjet printing process on a cellulose electro-ac...
Paper-based analytical technologies enable quantitative and rapid analysis of analytes from various ...
Surface energy incompatibility between ink and substrate is a significant obstacle for inkjet printi...
This communication describes a simple method for printing aqueous solutions with millimeter-scale pa...
This paper investigates the effect of surface wettability on the cross-sectional profiles of printed...
Flexible and conductive silver electrodes were fabricated by inkjet printing on several different co...
AbstractThis paper investigates the effect of surface wettability on the cross-sectional profiles of...
A major application of microfluidic paper-based analytical devices (mu PADs) includes the field of p...
We report on the effects of fabrication methods, photolithography, wax printing, screen printing, an...
Paper (and other cellulose-based materials such as cotton thread and fabrics) are underexploited as ...
This dissertation examines the direct printing of conductive inks on polymeric substrates for applic...
Printed electronics (PE) technology shows huge promise for the realisation of low-cost and flexible ...
We demonstrate a combined printing process utilizing inkjet printing of silver electrodes and solid-...
We demonstrate a combined printing process utilizing inkjet printing of silver electrodes and solid-...
Research done on paper based microfluidic has been escalating since 2007 as paper is because attract...
This paper reports a customized silver ink and its inkjet printing process on a cellulose electro-ac...
Paper-based analytical technologies enable quantitative and rapid analysis of analytes from various ...
Surface energy incompatibility between ink and substrate is a significant obstacle for inkjet printi...
This communication describes a simple method for printing aqueous solutions with millimeter-scale pa...
This paper investigates the effect of surface wettability on the cross-sectional profiles of printed...
Flexible and conductive silver electrodes were fabricated by inkjet printing on several different co...
AbstractThis paper investigates the effect of surface wettability on the cross-sectional profiles of...
A major application of microfluidic paper-based analytical devices (mu PADs) includes the field of p...
We report on the effects of fabrication methods, photolithography, wax printing, screen printing, an...
Paper (and other cellulose-based materials such as cotton thread and fabrics) are underexploited as ...
This dissertation examines the direct printing of conductive inks on polymeric substrates for applic...
Printed electronics (PE) technology shows huge promise for the realisation of low-cost and flexible ...