Zn 1− x Co x Mn 1− x Fe x CrO 4 ferrichromate: an efficient material for high performance supercapacitor applications

Zn 1− x Co x Mn 1− x Fe x CrO 4 ferrichromate was synthesized using the sol–gel auto-combustion method. Rietveld refinement confirms a single phase simple cubic spinel structure in all the samples. FESEM images indicated mixed morphology for all the samples with nearly hexagonal/spherical shape and...

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Veröffentlicht in:New journal of chemistry 2023-11, Vol.47 (44), p.20653-20667
Hauptverfasser: Salve, Vaibhav, Agale, Pramod, Rokade, Avinash, Kamble, Mahesh, Patange, Sunil, More, Paresh
Format: Artikel
Sprache:eng
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Zusammenfassung:Zn 1− x Co x Mn 1− x Fe x CrO 4 ferrichromate was synthesized using the sol–gel auto-combustion method. Rietveld refinement confirms a single phase simple cubic spinel structure in all the samples. FESEM images indicated mixed morphology for all the samples with nearly hexagonal/spherical shape and the agglomeration of particles. The elemental composition was confirmed using EDAX analysis. To validate the morphology of Zn 1− x Co x Mn 1− x Fe x CrO 4 ferrichromate obtained through FESEM, TEM images were taken, and the TEM images were in accordance with the FESEM images. Different oxidation states of Zn 1− x Co x Mn 1− x Fe x CrO 4 ( X = 1.0) ferrichromate was determined using XPS. The surface area of Zn 1− x Co x Mn 1− x Fe x CrO 4 ferrichromate was determined using BET analyzer. Further, the electrical conductivity of all the samples were investigated, and the correlation between the surface area and conductivity were discussed. The as-synthesized Zn 1− x Co x Mn 1− x Fe x CrO 4 ferrichromate materials were tested for their electrochemical and supercapacitor applications. The electrochemical measurements revealed that Zn 1− x Co x Mn 1− x Fe x CrO 4 with concentration ( X = 1.00) exhibits superior electrochemical performance over the other samples. A high specific capacitance of 286.94 F g −1 and high energy density of 14.30 W h kg −1 at a scan rate of 10 mV s −1 and 93.4% capacity retention over 5000 cycles were observed for Zn 1− x Co x Mn 1− x Fe x CrO 4 ( X = 1.00) ferrichromate. These properties make Co 1.0 Fe 1.0 Cr 1.0 O 4 ferrichromate an excellent electrode material to study supercapacitor applications.
ISSN:1144-0546
1369-9261
DOI:10.1039/D3NJ03295G