2015
DOI: 10.1016/j.carbon.2014.12.063
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Fabrication of manganese oxide/three-dimensional reduced graphene oxide composites as the supercapacitors by a reverse microemulsion method

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Cited by 74 publications
(38 citation statements)
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“…The MnO2 has α, β, γ, and δ -type polymorph Salunkhe et al, 2015). The advantages of manganese-based metal oxides include low cost, low toxicity, natural abundance, and environmental friendly in nature (Sui et al, 2015;Wei et al, 2015b). In aqueous and organic electrolyte, the MnO, MnO2, and Mn2O3 can form the different oxidation states.…”
Section: Recent Advances In Manganese Oxide Supercapacitormentioning
confidence: 99%
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“…The MnO2 has α, β, γ, and δ -type polymorph Salunkhe et al, 2015). The advantages of manganese-based metal oxides include low cost, low toxicity, natural abundance, and environmental friendly in nature (Sui et al, 2015;Wei et al, 2015b). In aqueous and organic electrolyte, the MnO, MnO2, and Mn2O3 can form the different oxidation states.…”
Section: Recent Advances In Manganese Oxide Supercapacitormentioning
confidence: 99%
“…Thus, it results in the high-specific capacitance. The highest reported theoretical specific capacitance of MnO2 is 1.370 Fg −1 (Guo et al, 2015a;Wei et al, 2015b). However, the low electrical conductivity and large volume change during the charge-discharge process result in the unsatisfactory rate performance and cyclic stability.…”
Section: Recent Advances In Manganese Oxide Supercapacitormentioning
confidence: 99%
“…B. Wei et al reports the MnO 2 /rGO composites displayed an excellent cycling (2.3% loss after 1000 cycles) [13]. The C/CoNi 3 O 4 composite possesses a specific capacitance of 1299 F g À1 and excellent rate capability (78% retention at the large discharge current) [14].…”
Section: Introductionmentioning
confidence: 97%
“…showed that a supercapacitors made of nanoporous gold and nanocrystalline MnO 2 resulted in a specific capacitance of 1145 F g −1 at 50 mV s −1 . Fei group28 reported the reverse micro emulsion method to prepare 3–20 nm MnO 2 /3D RGO composites. The 3D RGO could provide channels for rapid ionic and electronic transport.…”
mentioning
confidence: 99%