Porous metal oxide-carbon composite with hollow structure for energy storage applications

S. Adhikari
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Abstract

Nanocomposite structure of porous hollow TiO2 nanofibers (NFs) and graphitic carbon nitride (g-C3N4) sheets were directly fabricated by means of a novel electrospinning combined with calcination process. Owing to the high porosity, these nanostructured demonstrate enhanced energy storage properties when used in supercapacitors (SCs). Nanomaterials in particular offer unique properties or combinations of properties as electrodes and electrolytes in a range of energy devices. The energy storage behavior of electrochemical capacitors (ECs) made from TiO2/g-C3N4 nanocomposites was investigated by cyclic voltammetry and electrochemical impedance spectra. These tests showed that the supercapacitive performance of g-C3N4 was significantly enhanced after attaching porous TiO2 nanofibers.
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具有中空结构的多孔金属氧化物-碳复合材料储能应用
采用静电纺丝与煅烧相结合的新工艺,直接制备了多孔中空TiO2纳米纤维(NFs)与石墨氮化碳(g-C3N4)片的纳米复合结构。由于高孔隙率,这些纳米结构在用于超级电容器(SCs)时表现出增强的能量存储性能。特别是纳米材料在一系列能源设备中作为电极和电解质提供了独特的性能或性能组合。采用循环伏安法和电化学阻抗谱研究了TiO2/g-C3N4纳米复合材料电化学电容器的储能性能。实验结果表明,g-C3N4吸附多孔TiO2纳米纤维后,其超电容性能得到了显著提高。
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