High‐performance yet flexible micro‐supercapacitors (MSCs) hold great promise as miniaturized power sources for increasing demand of integrated electronic devices. Herein, this study demonstrates a scalable fabrication of multilayered graphene‐based MSCs (MG‐MSCs), by direct laser writing (DLW) of stacked graphene films made from industry‐scale chemical vapor deposition (CVD). Combining the dry transfer of multilayered CVD graphene films, DLW allows a highly efficient fabrication of large‐areal MSCs with exceptional flexibility, diverse planar geometry, and capability of customer‐designed integration. The MG‐MSCs exhibit simultaneously ultrahigh energy density of 23 mWh cm−3 and power density of 1860 W cm−3 in an ionogel electrolyte. Notabl...
Herein we report the fabrication and electrochemical characterization of a novel type of supercapaci...
Graphene is known as the miracle material of the 21st century for the wide band of participating app...
We report a novel approach to synthesize chemical vapor deposition-grown three-dimensional graphene ...
International audienceHigh‐performance yet flexible micro‐supercapacitors (MSCs) hold great promise ...
M. F. El-Kady and R. B. Kaner, “Scalable fabrication of high-power graphene micro-supercapacitors fo...
The rapidly developing demand for lightweight portable electronics has accelerated advanced research...
Direct, metal‐free synthesis of graphene films on insulating substrates in a controlled manner is of...
Micro-supercapacitors (MSCs) hold great promise as highly competitive miniaturized power sources sat...
Micro-supercapacitors (MSCs) hold great promise as highly competitive miniaturized power sources sat...
High performance, flexibility, safety, and robust integration for micro‐supercapacitors (MSCs) are o...
Microscale electrochemical energy storage devices, e.g., micro-supercapacitors (MSCs), possessing ta...
Flexible electronic devices find wide application in wearable electronics and foldable gadgets. This...
In this paper, we demonstrate that by simple laser induction, commercial polyimide films can be read...
Rational engineering and simplified fabrication of high-energy micro-supercapacitors (MSCs) using gr...
Three-dimensional (3D) printing is gaining importance as a sustainable route for the fabrication of ...
Herein we report the fabrication and electrochemical characterization of a novel type of supercapaci...
Graphene is known as the miracle material of the 21st century for the wide band of participating app...
We report a novel approach to synthesize chemical vapor deposition-grown three-dimensional graphene ...
International audienceHigh‐performance yet flexible micro‐supercapacitors (MSCs) hold great promise ...
M. F. El-Kady and R. B. Kaner, “Scalable fabrication of high-power graphene micro-supercapacitors fo...
The rapidly developing demand for lightweight portable electronics has accelerated advanced research...
Direct, metal‐free synthesis of graphene films on insulating substrates in a controlled manner is of...
Micro-supercapacitors (MSCs) hold great promise as highly competitive miniaturized power sources sat...
Micro-supercapacitors (MSCs) hold great promise as highly competitive miniaturized power sources sat...
High performance, flexibility, safety, and robust integration for micro‐supercapacitors (MSCs) are o...
Microscale electrochemical energy storage devices, e.g., micro-supercapacitors (MSCs), possessing ta...
Flexible electronic devices find wide application in wearable electronics and foldable gadgets. This...
In this paper, we demonstrate that by simple laser induction, commercial polyimide films can be read...
Rational engineering and simplified fabrication of high-energy micro-supercapacitors (MSCs) using gr...
Three-dimensional (3D) printing is gaining importance as a sustainable route for the fabrication of ...
Herein we report the fabrication and electrochemical characterization of a novel type of supercapaci...
Graphene is known as the miracle material of the 21st century for the wide band of participating app...
We report a novel approach to synthesize chemical vapor deposition-grown three-dimensional graphene ...