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- W2080334504 abstract "The salient feature of a supercapacitor is its ability to deliver much higher power density than a battery. A hierarchical design and a cost-effective approach to fabricate high performance supercapacitors using functional carbon nano-particles is reported. A special arc synthesis method is used to produce amorphous/crystalline composite with nitrogen and boron co-doped high charge density carbon nanoparticles. Upon etch removal of the amorphous phase in the composite nanoparticle, a crystalline carbon framework emerges, consisting of a mixture of nano-graphitic sheets mostly in the middle and single nanohorns distributed around the surface of the nanoparticle. These nanoparticles have large internal/external surfaces with subnano channels and sharp nano-tips for high speed charge transport and local charge accumulation. To deliver high power density, the internal resistance of the device is reduced by assembling the nanoparticles via electro-spraying and compacting them into dense films (without any binder) under 700 MPa of pressure before supercapacitor assembly. Taken together, the hierarchical processed supercapacitor has a very high (compared to literature values) power density of nearly 4.5 kW cm−3 and a respectable energy density of 2.45 mWh cm−3. Combining these carbon nanoparticles with large area spraying coating, it can lead to a cost-effective production of high performance supercapacitors." @default.
- W2080334504 created "2016-06-24" @default.
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- W2080334504 date "2014-04-02" @default.
- W2080334504 modified "2023-09-29" @default.
- W2080334504 title "Hierarchical Design for Fabricating Cost‐Effective High Performance Supercapacitors" @default.
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- W2080334504 doi "https://doi.org/10.1002/adfm.201304130" @default.
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