2015
DOI: 10.1016/j.apenergy.2014.09.055
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Synthesis and electrochemical properties of nickel–manganese oxide on MWCNTs/CFP substrate as a supercapacitor electrode

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Cited by 28 publications
(10 citation statements)
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“…In contrast to organic electrolytes, mild aqueous electrolytes have merits of high ionic conductivity, nontoxic, safety, non-corrosiveness and convenient assembly in air http://dx.doi.org/10.1016/j.apenergy.2016.06.057 0306-2619/Ó 2016 Elsevier Ltd. All rights reserved. [10,11]. However, the aqueous-based symmetric supercapacitors suffer from narrow potential window due to the limitation of water decomposition.…”
Section: Introductionmentioning
confidence: 99%
See 1 more Smart Citation
“…In contrast to organic electrolytes, mild aqueous electrolytes have merits of high ionic conductivity, nontoxic, safety, non-corrosiveness and convenient assembly in air http://dx.doi.org/10.1016/j.apenergy.2016.06.057 0306-2619/Ó 2016 Elsevier Ltd. All rights reserved. [10,11]. However, the aqueous-based symmetric supercapacitors suffer from narrow potential window due to the limitation of water decomposition.…”
Section: Introductionmentioning
confidence: 99%
“…In general, some carbon materials such as carbon nanotubes, graphenes and ordered mesoporous carbons are quite suitable for such application, whereas most of their preparation methods are relatively complicated and costly [28][29][30][31][32]. In addition to the carbon materials mentioned above, hierarchical porous carbons (HPCs) are another kind of high-performance electrode materials for supercapacitors.…”
Section: Introductionmentioning
confidence: 99%
“…Paper [5] reports the synthesis and application of new supercapacitor electrodes composed of nickel-manganese oxide deposited on a MWCNT/CFP composite substrate. Article [6] uses polypyrrole, a psuedocapacitative conductive polymer, doped with fluorescent brightener CBS-X in what is deemed a smart electrode materials.…”
Section: Psuedocapacitor Materials Developmentmentioning
confidence: 99%
“…Carbon fiber is an excellent electrode material for structural capacitors because it provides outstanding mechanical properties such as tensile strength, compressive strength, delamination resistance, and very good electrical conductivity [31,32]. But conventional CF laminates have been unable to deliver the expected properties because of a lack of proper graphitization and a comparatively low surface area [33,34]. Enhancing the surface area of CF laminates to achieve improved electrical properties without compromising mechanical properties is very challenging.…”
Section: Electrode Developmentmentioning
confidence: 99%