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Such materials exhibit enhanced strength only along the direction of the fibres.
The materials exhibit enhanced rate capability than the counterpart electrode free of graphene while maintaining a high specific capacitance.
Recent studies suggested that graphene oxide (GO) possesses antibacterial properties against Escherichia coli[17 19] and that AgNP-functionalized graphene-based materials exhibit enhanced antibacterial properties [20 23].
Anodes prepared from these composite materials exhibit enhanced electrochemical performances, including a high reversible capacity, high initial coulombic efficiency, high charging/discharging rate capability, and desirable cycling stability.
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The SBF incubation test confirmed the formation of apatite-like materials, exhibiting enhanced bioactive behavior of the polyurethane/CaCl2 composite nanofibers.
When used as a supercapacitor electrode material, Ni3Si2O5(OH)4/RGO composite hollow microspheres delivered a maximum specific capacitance of 178.9 F g−1 at the current density of 1 A g−1, which was better than that of currently developed contrastive bare Ni3Si2O5(Ohollowllow microspheres and bare RGO material, exhibiting enhanced supercapacitive property.
It has been expected that nanostructured thermoelectric materials would exhibit enhanced performance [1 5].
The test results indicate that HPFRCC materials can exhibit enhanced biaxial compression performance, compared to plain concrete specimens, due to passive confinement provided by fibers in the out-of-plane direction.
The as-fabricated N-FLGS utilized as electrode materials for supercapacitor exhibit enhanced electrochemical performance, including excellent cycling stability (the capacitance ratios after 10 000 cycles is 96.1%) and a remarkable rate capability (184.5 F g−1 at 1 A g−1, 132.7 F g−1 at 50 A g−1).
When the prepared Mn3O4 nanosheets are applied as electrode materials for supercapacitors, they exhibit enhanced electrochemical performances due to the high utilization of active materials.
All of the N-doped materials exhibit significantly enhanced activity compared to the undoped ones.
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