Many industry applications require electronic circuits and systems to operate at high temperatures over 150 °C. Although planar microsupercapacitors (MSCs) have great potential for miniaturized on-chip integrated energy storage components, most of the present devices can only operate at low temperatures (<100 °C). In this work, we have demonstrated a facile process to fabricate activated graphene-based MSCs that can work at temperatures as high as 150 °C with high areal capacitance over 10 mF cm−2 and good cycling performance. Remarkably, the devices exhibit no capacitance degradation during temperature cycling between 25 °C and 150 °C, thanks to the thermal stability of the active components
Due to the increasing demand for high power and reliable miniaturized energy storage devices, the de...
High-voltage energy-storage devices are quite commonly needed for robots and dielectric elastomers. ...
An on-chip microsupercapacitor (MSC) pattern is obtained by layer-by-layer spray deposition of both ...
Many industry applications require electronic circuits and systems to operate at high temperatures o...
Many industry applications require electronic circuits and systems to operate at high temperatures o...
The raised demand for portable electronics in high-temperature environments (>150 °C) stimulates ...
The raised demand for portable electronics in high-temperature environments (>150 °C) stimulates ...
Microscale electrochemical energy storage devices, e.g., micro-supercapacitors (MSCs), possessing ta...
Graphene based micro-supercapacitors (MSCs) have been extensively studied in recent years; however, ...
The development of miniaturized energy storage components with high areal performance for emerging e...
Supercapacitors represent a critical energy storage device technology for applications which require...
We demonstrated the fabrication of functionalized graphene nanosheets <i>via</i> low temperature (30...
The rise of miniaturized, flexible and self-powered electronic systems has substantially stimulated ...
Supercapacitors are ideal tools for energy storage due to their wide range of operation temperatures...
This work presents a wafer-scale method of microsupercapacitor (MSC) fabrication. Deposition of the ...
Due to the increasing demand for high power and reliable miniaturized energy storage devices, the de...
High-voltage energy-storage devices are quite commonly needed for robots and dielectric elastomers. ...
An on-chip microsupercapacitor (MSC) pattern is obtained by layer-by-layer spray deposition of both ...
Many industry applications require electronic circuits and systems to operate at high temperatures o...
Many industry applications require electronic circuits and systems to operate at high temperatures o...
The raised demand for portable electronics in high-temperature environments (>150 °C) stimulates ...
The raised demand for portable electronics in high-temperature environments (>150 °C) stimulates ...
Microscale electrochemical energy storage devices, e.g., micro-supercapacitors (MSCs), possessing ta...
Graphene based micro-supercapacitors (MSCs) have been extensively studied in recent years; however, ...
The development of miniaturized energy storage components with high areal performance for emerging e...
Supercapacitors represent a critical energy storage device technology for applications which require...
We demonstrated the fabrication of functionalized graphene nanosheets <i>via</i> low temperature (30...
The rise of miniaturized, flexible and self-powered electronic systems has substantially stimulated ...
Supercapacitors are ideal tools for energy storage due to their wide range of operation temperatures...
This work presents a wafer-scale method of microsupercapacitor (MSC) fabrication. Deposition of the ...
Due to the increasing demand for high power and reliable miniaturized energy storage devices, the de...
High-voltage energy-storage devices are quite commonly needed for robots and dielectric elastomers. ...
An on-chip microsupercapacitor (MSC) pattern is obtained by layer-by-layer spray deposition of both ...