2015
DOI: 10.1016/j.electacta.2015.04.159
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Fabrication of CoWO4@NiWO4 nanocomposites with good supercapacitve performances

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Cited by 82 publications
(30 citation statements)
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“…where and 159.4% for the NWC-600-10, NWC-700-10 and NWC-800-10 samples after 1500 cycles, respectively. In addition, the sample of NWC-700-10 showed a higher capacitance value compared with Xu [37]'s work (NiWO 4 /rGO, 704 F g -1 ) and Kumar [16]'s work (NiWO 4 nanopowder, 171.28 F g -1 ).…”
Section: Electrochemical Characterisations Of Niwo 4 /Ni/carbon Fibrementioning
confidence: 71%
“…where and 159.4% for the NWC-600-10, NWC-700-10 and NWC-800-10 samples after 1500 cycles, respectively. In addition, the sample of NWC-700-10 showed a higher capacitance value compared with Xu [37]'s work (NiWO 4 /rGO, 704 F g -1 ) and Kumar [16]'s work (NiWO 4 nanopowder, 171.28 F g -1 ).…”
Section: Electrochemical Characterisations Of Niwo 4 /Ni/carbon Fibrementioning
confidence: 71%
“…For instance, Xu et al reported the preparation of CoWO 4 ,NiWO 4 ,and CoWO 4 -NiWO 4 nanocomposites through af acile chemical coprecipitation method and evaluated their performances in SCs. [114] The authors found that CoWO 4 with ap article-like morphologyh ad good stability, and flake-like NiWO 4 exhibited ah igh capacity.ACoWO 4 -NiWO 4 nanocomposite electrode with a1 :1 Co/Ni molar ratio showedahighers pecific capacitance of 862 Fg À1 at 10 mV s À1 , compared with those of pure NiWO 4 (704 Fg À1 )a nd CoWO 4 (458 Fg À1 )e lectrodes. Kumar and Karuppuchamyn demonstrated the microwave-assisted synthesis of CuWO 4 nanopowder.…”
Section: W-based Binary Metal Oxide Composite Materialsmentioning
confidence: 99%
“…For instance, Xu et al. reported the preparation of CoWO 4 , NiWO 4 , and CoWO 4 –NiWO 4 nanocomposites through a facile chemical coprecipitation method and evaluated their performances in SCs . The authors found that CoWO 4 with a particle‐like morphology had good stability, and flake‐like NiWO 4 exhibited a high capacity.…”
Section: Current Advances In Wo3‐based Scsmentioning
confidence: 99%
“…[30] It was also proposed that the iron centres act as catalytically active sites, leading to improved catalyst performance. [6] However, while materials such as CoWO 4 have received significant interest as electroactive compounds, [35,36,37] their application as OER and ORR catalysts has thus far been hindered by their low electronic and ionic conductivity. [34] Recent computational studies suggested that the electrocatalytic activity of 3d metal oxides can be further modulated by introducing high-valent heavy metals such as W, resulting in near-optimal adsorption energies for intermediates.…”
Section: Introductionmentioning
confidence: 99%