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Paper Information

Journal:   NANOSCALE   summer 2020 , Volume 7 , Number 2 ; Page(s) 19 To 25.
 
Paper: 

Growth of NiCo2S4 nanostructures on nickel foam for its application as high performance supercapacitor electrode

 
 
Author(s):  Moradlou Omran*, Sharifpour Hanieh
 
* Department of Chemistry, Faculty of Physics and Chemistry, Alzahra University, Tehran, Iran
 
Abstract: 
In this work, NiCo2S4 nanostructures were grown on nickel foam by using chemical bath deposition (CBD) method for the construction of high performance supercapacitor electrode. The morphology of the samples was characterized with scanning electron microscopy (SEM) and the supercapacitive behavior of the electrode was investigated by various electrochemical techniques including cyclic voltammetry (CV), Galvano static charge-discharge (GCD) and electrochemical impedance spectroscopy (EIS). The fabricated electrode provides a specific capacitance of 303 mF cm in 1. 0 M KOH. Electron transfer resistance (Rct) of the electrode was studied by EIS and obtained to be 5. 5 Ω . The electrochemical performance parameters of the fabricated electrode show that the proposed metal sulfide-based composite is an appropriate electrode for the supercapacitor applications.
 
Keyword(s): Nickel cobalt sulfide,nanoplates,supercapacitor,nickel foam,charge transfer rate,charge-discharge
 
 
References: 
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Citations: 
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+ Click to Cite.
APA: Copy

Moradlou, O., & Sharifpour, H. (2020). Growth of NiCo2S4 nanostructures on nickel foam for its application as high performance supercapacitor electrode. NANOSCALE, 7(2 ), 19-25. https://www.sid.ir/en/journal/ViewPaper.aspx?id=744273



Vancouver: Copy

Moradlou Omran, Sharifpour Hanieh. Growth of NiCo2S4 nanostructures on nickel foam for its application as high performance supercapacitor electrode. NANOSCALE. 2020 [cited 2021December02];7(2 ):19-25. Available from: https://www.sid.ir/en/journal/ViewPaper.aspx?id=744273



IEEE: Copy

Moradlou, O., Sharifpour, H., 2020. Growth of NiCo2S4 nanostructures on nickel foam for its application as high performance supercapacitor electrode. NANOSCALE, [online] 7(2 ), pp.19-25. Available: https://www.sid.ir/en/journal/ViewPaper.aspx?id=744273.



 
 
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