Bio-derived three-dimensional hierarchical carbon-graphene-TiO(2) as electrode for supercapacitors

生物基三维分级碳-石墨烯-TiO(2)作为超级电容器电极

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Abstract

This paper reports a novel loofah-derived hierarchical scaffold to obtain three-dimensional biocarbon-graphene-TiO(2) (BC-G-TiO(2)) composite materials as electrodes for supercapacitors. The loofah scaffold was first loaded with G and TiO(2) by immersing, squeezing, and loosening into the mixed solution of graphene oxide and titania, and then carbonized at 900 °C to form the BC-G-TiO(2) composite. The synergistic effects of the naturally hierarchical biocarbon structure, graphene, and TiO(2) nanoparticles on the electrochemical properties are analyzed. The biocarbon provides a high interconnection and an easy accessibility surface for the electrolyte. Graphene bridged the BC and TiO(2) nanoparticles, improved the conductivity of the BC-G-TiO(2) composite, and increased the electron transfer efficiency. TiO(2) nanoparticles also contributed to the pesudocapacitance and electrochemical stability.

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