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Li, M., Zu, M., Yu, J., Cheng, H. & Li, Q. Stretchable fiber supercapacitors with high volumetric performance based on buckled MnO2 /oxidized carbon nanotube fiber electrodes.
The volumetric performance is even much better than previous reported FASC devices that were designed with complicated electrode architectures.
Therefore, the use of pseudocapacitive oxides or nitrides as electrode materials can drastically improve the volumetric performance.
Volumetric performance is highly important for evaluating the potential of supercapacitors, especially for the case where electrode space is limited.
Such ACNS thus shows great potential as a promising porous carbon material for high volumetric performance supercapacitors.
The results were compared with the application of the ANSI/ASME B89 volumetric performance test using a conventional ball bar and the proposed virtual ball bar.
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Hence, PIn/CB/MoS2-2 comproves proves to be very effective with fairly improved gravimetric and volumetric performances as an electrode material for supercapacitor applications.
However, their poor volumetric performances come from low density and/or high pore volume of the electrode materials, as well as their high manufacturing cost, which would limit their further applications.
These exciting results suggest a low-cost and environmentally friendly design of electrode materials for high volumetric-performance supercapacitors.
Development of carbon electrodes with high volumetric electrochemical performance is challenging for high-performance energy storage devices.
Therefore, this work will provide a new strategy for designing high volumetric capacitive performance of graphene for energy storage devices.
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