2018
DOI: 10.1002/bkcs.11389
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Co3O4 Nanocrystals on Crab Shell‐derived Carbon Nanofibers (Co3O4@CSCNs) for High‐performance Supercapacitors

Abstract: Waste crab shell (CS) is implemented to prepare highly N‐doped and CS‐derived hierarchical porous carbon nanofibers (CSCNs) capable of high‐performance supercapacitors combining with Co3O4 nanocrystals. The fiber nature of the exoskeleton of CSs is transformed to N‐containing organic nanofibers, which are carbonized and subsequently activated by hot CO2 treatment to control the specific surface area (SSA) and pore size distribution (PSD). The interwoven bundles of CSCNs present intrinsic macroporosity whereas … Show more

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Cited by 19 publications
(2 citation statements)
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“…Meanwhile, the hollow tubular structure of kapok fiber is retained during the preparation process of hollow tubular BDCs/NiO composite 217 . Similarly, BDCs from kapok‐fibers‐supported RuO 2 218 and BDCs from waste crab‐shell‐supported Co 3 O 4 nanocrystals also exhibit enhanced electrochemical performances 222 …”
Section: Influencing Factors Of Bdcs In Ecsmentioning
confidence: 99%
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“…Meanwhile, the hollow tubular structure of kapok fiber is retained during the preparation process of hollow tubular BDCs/NiO composite 217 . Similarly, BDCs from kapok‐fibers‐supported RuO 2 218 and BDCs from waste crab‐shell‐supported Co 3 O 4 nanocrystals also exhibit enhanced electrochemical performances 222 …”
Section: Influencing Factors Of Bdcs In Ecsmentioning
confidence: 99%
“…Compared to carbon materials, pseudocapacitive materials based on typical transition metal oxides or hydroxides, such as MnO 2 , 242–244 Fe 2 O 3 , 245 NiO, 217 Co 3 O 4 , 222,246 and Ni(OH) 2 , 230 possess higher capacity and superior redox activity. The redox reactivity of the materials mainly originates from the multivalent characters of transition metals.…”
Section: Influencing Factors Of Bdcs In Ecsmentioning
confidence: 99%