Structural and electrochemical properties of GO/Mn3O4 nanocomposite

A cost effective and facile sol–gel method is used to synthesize graphene oxide (GO)/Mn 3 O 4 nanocomposite (NC). The synthesized materials (GO and GO/Mn 3 O 4 nanocomposite) were analyzed using different characterization techniques. X-ray diffraction (XRD) analysis confirmed the presence of Mn 3 O...

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Veröffentlicht in:Journal of materials science. Materials in electronics 2021-02, Vol.32 (3), p.3894-3902
Hauptverfasser: Chauhan, Ankul, Naseem, Swaleha, Bahadur, Jitendra, Singh, B. R., Shoeb, Mohd, Husain, Shahid, Khan, Wasi
Format: Artikel
Sprache:eng
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Zusammenfassung:A cost effective and facile sol–gel method is used to synthesize graphene oxide (GO)/Mn 3 O 4 nanocomposite (NC). The synthesized materials (GO and GO/Mn 3 O 4 nanocomposite) were analyzed using different characterization techniques. X-ray diffraction (XRD) analysis confirmed the presence of Mn 3 O 4 nanoparticles incorporated in the synthesized GO matrix. The stretching and bending vibrational modes corresponding to various functional groups (–OH, C–H, C–C, etc.) present in the FTIR spectra of the synthesized nanocomposite. The microstructural studies have been carried out through scanning electron microscopy (SEM) and transmission electron microscopy (TEM) that revealed the layered morphology of GO and uniform size distribution of Mn 3 O 4 nanoparticles over the GO layers. UV–visible measurement indicates a red shift in the GO/Mn 3 O 4 nanocomposite absorption edge as compared to the GO and associated band gap reduced from 4.46 eV (GO) to 2.95 eV (GO/Mn 3 O 4 ) attributed to the π – π non-covalent electrostatic interactions. The electrochemical study revealed a high specific capacitance of GO/Mn 3 O 4 nanocomposite as compared to GO sheets, making it suitable candidate for supercapacitors.
ISSN:0957-4522
1573-482X
DOI:10.1007/s10854-020-05132-6