CNTs Boost MXene Fibers for Supercapacitor Applications
An easily configurable wet-spinning approach for preparing versatile MXene/carbon nanotube (MXene/CNT) hybrid composites suitable for supercapacitor applications is presented.
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An easily configurable wet-spinning approach for preparing versatile MXene/carbon nanotube (MXene/CNT) hybrid composites suitable for supercapacitor applications is presented.
Newly synthesized CNTs have helped to address the mass-charge issue in asymmetrical supercapacitors.
A study demonstrates the feasibility of using a novel metastable carbon nanotubes (CNTs)/vanadium oxide (VO2) nanocomposite as a supercapacitor electrode material.
Bacteria/electrospun carbon nanofibers integrated with carbon nanotubes and their utility as an effective anode to improve microbial fuel cell performance is discussed.
In an article recently published in the journal Carbon, researchers discussed the potential applications of novel two-dimensional (2D) fenestrane-based auxetic nanocarbon allotropes i.e., four-penta-graphenes in nanoelectronics and optoelectronics.