2017
DOI: 10.1016/j.apsusc.2016.12.036
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Gold nanoparticles decorated MnO2 nanowires for high performance supercapacitor

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Cited by 53 publications
(14 citation statements)
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“…6c) confirmed that Ag NPs had regularly scattered across the whole surface of the MoO 3 NFs [30]. Furthermore, Au-decorated MnO 2 nanowires displayed enhanced performance toward supercapacitor applications due to the increased defects, surface area and increase in the capacity toward charge storage [31]. Shakir et al [32] synthesized tin oxide-coated molybdenum oxide nanowires (SnO 2 /MoO 3 ) via hydrothermal and wet chemical routes.…”
Section: Functional Modification Of Moo X Nanowiresmentioning
confidence: 91%
“…6c) confirmed that Ag NPs had regularly scattered across the whole surface of the MoO 3 NFs [30]. Furthermore, Au-decorated MnO 2 nanowires displayed enhanced performance toward supercapacitor applications due to the increased defects, surface area and increase in the capacity toward charge storage [31]. Shakir et al [32] synthesized tin oxide-coated molybdenum oxide nanowires (SnO 2 /MoO 3 ) via hydrothermal and wet chemical routes.…”
Section: Functional Modification Of Moo X Nanowiresmentioning
confidence: 91%
“…In recent years, some energy storage materials that store and release energy through redox reactions have attracted increasing interest as flexible electrode materials, since they have higher specific capacitance than carbon materials [24,25]. Decoration onto graphene of pseudo capacitive materials such as manganese dioxide [26][27][28][29][30], ruthenium dioxide [31,32], titanium dioxide [33,34], cobalt oxide [35,36], nickel and zinc cobaltate (NiCo2O4/ZnCo2O4) [37,38], nickel hydroxide [Ni(OH)2] [39] and cobalt nickel sulfide (CoNi2S4) [40] has led to significant improvements in electrode capacitance. Among the various reported pseudo capacitive materials, MnO2 has attracted much attention due to its low cost, environmental friendliness and high theoretical specific capacitance [27].…”
Section: Synthesis Of Hierarchical Graphene-mno 2 Nanowirementioning
confidence: 99%
“…Therefore, new composite materials were synthesized to develop the electrochemical performance and stability of RuO 2 . Active carbon [26], carbon aerogel [27], carbon black [28], carbon nanotubes (CNTs) [29], graphene [30], conducting polymers [31], and metal oxides [32] have been extensively studied as supercapacitors in the literature [33,34]. RuO 2 is used as a pseudocapacitor in supercapacitor [35,36].…”
Section: Nanocomposites With Ruomentioning
confidence: 99%