G-C3N4/CuO and g-C3N4/Co3O4 nanohybrid structures as efficient electrode materials in symmetric supercapacitors

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Abstract

Metal oxide dispersed graphitic carbon nitride hybrid nanocomposites (g-C3N4/CuO and g-C3N4/Co3O4) were prepared via a direct precipitation method. The materials were used as an electrode material in symmetric supercapacitors. The g-C3N4/Co3O4 electrode based device exhibited a specific capacitance of 201 F g-1 which is substantially higher than those using g-C3N4/CuO (95 F g-1) and bare g-C3N4 electrodes (72 F g-1). At a constant power density of 1 kW kg-1, the energy density given by g-C3N4/Co3O4 and g-C3N4/CuO devices is 27.9 W h kg-1 and 13.2 W h kg-1 respectively. The enhancement of the electrochemical performance in the hybrid material is attributed to the pseudo capacitive nature of the metal oxide nanoparticles incorporated in the g-C3N4 matrix.

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Kavil, J., Anjana, P. M., Joshy, D., Babu, A., Raj, G., Periyat, P., & Rakhi, R. B. (2019). G-C3N4/CuO and g-C3N4/Co3O4 nanohybrid structures as efficient electrode materials in symmetric supercapacitors. RSC Advances, 9(66), 38430–38437. https://doi.org/10.1039/c9ra08979a

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