In this paper, we demonstrate that by simple laser induction, commercial polyimide films can be readily transformed into porous graphene for the fabrication of flexible, solid-state supercapacitors. Two different solid-state electrolyte supercapacitors are described, namely vertically stacked graphene supercapacitors and in-plane graphene microsupercapacitors, each with enhanced electrochemical performance, cyclability, and flexibility. Devices with a solid-state polymeric electrolyte exhibit areal capacitance of >9 mF/cm<sup>2</sup> at a current density of 0.02 mA/cm<sup>2</sup>, more than twice that of conventional aqueous electrolytes. Moreover, laser induction on both sides of polyimide sheets enables the fabrication of vertically stack...
The energy density and working potential of conventional supercapacitor devices are in the range of...
Realization of a highly flexible, lightweight, and high performance flexible supercapacitor was achi...
Recent developments of low-power electronic devices have triggered interests towards small-scale ene...
All-solid-state, flexible, symmetric, and asymmetric microsupercapacitors are fabricated by a simple...
Graphene-based supercapacitors are powerful devices for supporting smart wearable electronics. Howev...
The rapidly developing demand for lightweight portable electronics has accelerated advanced research...
The transcendence toward smarter technologies and the rapid expansion of the Internet of Things requ...
Due to its unique features, laser-induced graphene (LIG) can be considered as disruptive technology ...
The cost effective synthesis and patterning of carbon nanomaterials is a challenge in electronic and...
Supercapacitors, with the merits of both capacitors for safe and fast charge and batteries for high ...
Heteroatom-doped graphene materials have been intensely studied as active electrodes in energy stora...
A controlled high powered CO2 laser system is used to reduce and pattern graphene oxide (GO) film su...
We Demonstrated and Verified the Use Of laser Reduced Graphene Oxide (LRGO) Supported on Polyethylen...
Flexible supercapacitors based on bendable electrodes have aroused much interest for integration in ...
Micro-supercapacitors (MSCs) hold great promise as highly competitive miniaturized power sources sat...
The energy density and working potential of conventional supercapacitor devices are in the range of...
Realization of a highly flexible, lightweight, and high performance flexible supercapacitor was achi...
Recent developments of low-power electronic devices have triggered interests towards small-scale ene...
All-solid-state, flexible, symmetric, and asymmetric microsupercapacitors are fabricated by a simple...
Graphene-based supercapacitors are powerful devices for supporting smart wearable electronics. Howev...
The rapidly developing demand for lightweight portable electronics has accelerated advanced research...
The transcendence toward smarter technologies and the rapid expansion of the Internet of Things requ...
Due to its unique features, laser-induced graphene (LIG) can be considered as disruptive technology ...
The cost effective synthesis and patterning of carbon nanomaterials is a challenge in electronic and...
Supercapacitors, with the merits of both capacitors for safe and fast charge and batteries for high ...
Heteroatom-doped graphene materials have been intensely studied as active electrodes in energy stora...
A controlled high powered CO2 laser system is used to reduce and pattern graphene oxide (GO) film su...
We Demonstrated and Verified the Use Of laser Reduced Graphene Oxide (LRGO) Supported on Polyethylen...
Flexible supercapacitors based on bendable electrodes have aroused much interest for integration in ...
Micro-supercapacitors (MSCs) hold great promise as highly competitive miniaturized power sources sat...
The energy density and working potential of conventional supercapacitor devices are in the range of...
Realization of a highly flexible, lightweight, and high performance flexible supercapacitor was achi...
Recent developments of low-power electronic devices have triggered interests towards small-scale ene...