Carbon black nanoparticles with a high reversible capacity synthesized by liquid phase plasma process

Carbon black nanoparticles with a high reversible capacity synthesized by liquid phase plasma... Carbon blacks synthesized by the liquid phase plasma process in benzene with and without distilled water showed a very high charging capacity of about 1,540–1,600 mAh/g depending on the liquid involved. CBs synthesized from organic benzene only were found to have a higher specific surface area compared to CBs from benzene with water, contributing to the higher charging capacity of 1,600 mAh/g. The charge–discharge cyclic stability (measured from 2 to 20 cycles) of the CBs synthesized from benzene was significantly improved with the addition of water from 58 % to about 70 % reversible capacity. Our results suggest a promising method of producing carbon black nanoparticles at low temperatures with a reasonable performance applicable for lithium ion batteries. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Research on Chemical Intermediates Springer Journals

Carbon black nanoparticles with a high reversible capacity synthesized by liquid phase plasma process

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Publisher
Springer Netherlands
Copyright
Copyright © 2014 by Springer Science+Business Media Dordrecht
Subject
Chemistry; Catalysis; Physical Chemistry; Inorganic Chemistry
ISSN
0922-6168
eISSN
1568-5675
D.O.I.
10.1007/s11164-014-1668-8
Publisher site
See Article on Publisher Site

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