Extrusion printing of interdigitated electrodes for flexible microsupercapacitors (fMSCs) offers an attractive route to the fabrication of flexible devices where cost, scalability, and processability of ink formulations are critical. In this work, highly concentrated, viscous, and water-dispersible inks are developed based on graphene oxide (GO)/polyaniline (PANi) composite for extrusion printing. The optimized GO/PANi-based all-solid-state symmetric fMSCs obtained by extrusion printing interdigitated microelectrodes can deliver outstanding areal capacitance of 153.6 mF cm -2 and volumetric capacitance of 19.2 F cm -3 at 5 mV s -1 . It is shown that by fabricating asymmetric fMSCs using the GO/PANi as positive electrode and a graphene-based...
High performance, flexibility, safety, and robust integration for micro‐supercapacitors (MSCs) are o...
For foldable electronic devices of the future, most components should have very good flexibility and...
Graphene-based planar micro-supercapacitors are layer-by-layer printed on flexible substrates using ...
Micro-supercapacitors have recently emerged as promising microscale power sources for portable and w...
Micro-supercapacitors have recently emerged as promising microscale power sources for portable and w...
We apply direct ink writing for the three-dimensional (3D) printing of polyaniline/reduced graphene ...
Printing technologies are becoming increasingly popular because they enable the large-scale and low-...
High performance, flexibility, safety, and robust integration for micro-supercapacitors (MSCs) are o...
Inkjet printing is becoming one of the most efficient micro-manufacturing techniques to fabricate th...
The outstanding properties of graphene make it attractive ink filler for conductive inks which plays...
Supercapacitors have been regarded as promising power supplies for future electronics due to their h...
Scalable fabrication of high-rate micro-supercapacitors (MSCs) is highly desired for on-chip integra...
Three-dimensional (3D) printing is gaining importance as a sustainable route for the fabrication of ...
Highly conductive pristine graphene electrodes were fabricated by inkjet printing using ethyl cellul...
Graphene inks have recently enabled the dramatic improvement of printed flexible electronics due to ...
High performance, flexibility, safety, and robust integration for micro‐supercapacitors (MSCs) are o...
For foldable electronic devices of the future, most components should have very good flexibility and...
Graphene-based planar micro-supercapacitors are layer-by-layer printed on flexible substrates using ...
Micro-supercapacitors have recently emerged as promising microscale power sources for portable and w...
Micro-supercapacitors have recently emerged as promising microscale power sources for portable and w...
We apply direct ink writing for the three-dimensional (3D) printing of polyaniline/reduced graphene ...
Printing technologies are becoming increasingly popular because they enable the large-scale and low-...
High performance, flexibility, safety, and robust integration for micro-supercapacitors (MSCs) are o...
Inkjet printing is becoming one of the most efficient micro-manufacturing techniques to fabricate th...
The outstanding properties of graphene make it attractive ink filler for conductive inks which plays...
Supercapacitors have been regarded as promising power supplies for future electronics due to their h...
Scalable fabrication of high-rate micro-supercapacitors (MSCs) is highly desired for on-chip integra...
Three-dimensional (3D) printing is gaining importance as a sustainable route for the fabrication of ...
Highly conductive pristine graphene electrodes were fabricated by inkjet printing using ethyl cellul...
Graphene inks have recently enabled the dramatic improvement of printed flexible electronics due to ...
High performance, flexibility, safety, and robust integration for micro‐supercapacitors (MSCs) are o...
For foldable electronic devices of the future, most components should have very good flexibility and...
Graphene-based planar micro-supercapacitors are layer-by-layer printed on flexible substrates using ...