Pristine graphene inks show great promise for flexible printed electronics due to their high electrical conductivity and robust mechanical, chemical, and environmental stability. While traditional liquid-phase printing methods can produce graphene patterns with a resolution of ∼30 μm, more precise techniques are required for improved device performance and integration density. A high-resolution transfer printing method is developed here capable of printing conductive graphene patterns on plastic with line width and spacing as small as 3.2 and 1 μm, respectively. The core of this method lies in the design of a graphene ink and its integration with a thermally robust mold that enables annealing at up to ∼250 °C for precise, high-performance g...
The manufacturing of three-dimensional (3D) graphene monoliths with remarkable electrical performanc...
Printing has drawn a lot of attention as a means of low per-unit cost and high throughput patterning...
Flexographic printing is promising for large-area electronics due to high print-speed and roll-to-ro...
Pristine graphene inks show great promise for flexible printed electronics due to their high electri...
Scalable fabrication of high-resolution electrodes and interconnects is necessary to enable advanced...
We demonstrate a method that uses the pillars on a stamp to cut and exfoliate graphene islands from ...
Graphene has been highlighted as a platform material in transparent electronics and optoelectronics,...
Printed graphene microsupercapacitors (MSCs) are attractive for scalable and low-cost on-chip energy...
Printed electronics has attracted significant interest in recent years due to simple, cost-effective...
This work demonstrates the synthesis of high quality, single layer graphene on commercially availabl...
Solution-phase printing of nanomaterial-based graphene inks are rapidly gaining interest for fabrica...
This work demonstrates the synthesis of high quality, single layer graphene on commercially availabl...
The manufacturing of three-dimensional (3D) graphene monoliths with remarkable electrical performanc...
We demonstrate inkjet printing as a viable method for large-area fabrication of graphene devices. We...
We describe a simple and scalable method for the transfer of CVD graphene for the fabrication of fie...
The manufacturing of three-dimensional (3D) graphene monoliths with remarkable electrical performanc...
Printing has drawn a lot of attention as a means of low per-unit cost and high throughput patterning...
Flexographic printing is promising for large-area electronics due to high print-speed and roll-to-ro...
Pristine graphene inks show great promise for flexible printed electronics due to their high electri...
Scalable fabrication of high-resolution electrodes and interconnects is necessary to enable advanced...
We demonstrate a method that uses the pillars on a stamp to cut and exfoliate graphene islands from ...
Graphene has been highlighted as a platform material in transparent electronics and optoelectronics,...
Printed graphene microsupercapacitors (MSCs) are attractive for scalable and low-cost on-chip energy...
Printed electronics has attracted significant interest in recent years due to simple, cost-effective...
This work demonstrates the synthesis of high quality, single layer graphene on commercially availabl...
Solution-phase printing of nanomaterial-based graphene inks are rapidly gaining interest for fabrica...
This work demonstrates the synthesis of high quality, single layer graphene on commercially availabl...
The manufacturing of three-dimensional (3D) graphene monoliths with remarkable electrical performanc...
We demonstrate inkjet printing as a viable method for large-area fabrication of graphene devices. We...
We describe a simple and scalable method for the transfer of CVD graphene for the fabrication of fie...
The manufacturing of three-dimensional (3D) graphene monoliths with remarkable electrical performanc...
Printing has drawn a lot of attention as a means of low per-unit cost and high throughput patterning...
Flexographic printing is promising for large-area electronics due to high print-speed and roll-to-ro...