Article ID Journal Published Year Pages File Type
7952917 Nano Energy 2018 9 Pages PDF
Abstract
A general controllable two-step anion-exchange method results in novel hierarchically porous hexagonal thin microsheets constructed by well-interwoven nanotubes (NTs), which shows higher specific capacitances and superior rate capability than most reported MCo2S4 nanostructures with different morphologies as well as excellent cycling stability at high current densities due to the highly porous and robust NT-built network architecture as well as high conductivity, all allowing asymmetric solid-state supercapacitor with such MCo2S4 as positive electrode to achieve much superior energy density over those reported for similar devices and outstanding cycle ability.257
Related Topics
Physical Sciences and Engineering Energy Energy (General)
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