Micelles self-degraded template based 2D graphitic carbon nitride-polypyrrole nanotube composite electrode for high supercapacitor performance

被引:7
|
作者
Vijaykumar, S. P. [1 ]
Sapna, S. [1 ]
Suresh, D. S. [1 ]
Ganesha, H. [1 ]
Veeresh, S. [1 ]
Nagaraju, Y. S. [1 ]
Devendrappa, H. [1 ]
机构
[1] Mangalore Univ, Dept Phys, Mangalagangothri 574199, India
关键词
2D material; Graphitic carbon nitride; Polypyrrole nanotubes; GCD pyrolysis; Energy storage; REDUCED GRAPHENE OXIDE; ENHANCED PHOTOCATALYTIC PERFORMANCE; RAMAN-SPECTROSCOPY; NANOSHEETS; NANOCOMPOSITE; WATER; HETEROJUNCTION; NANOSTRUCTURE; DEPENDENCE; BEHAVIOR;
D O I
10.1016/j.diamond.2023.110257
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In this present work, Graphitic Carbon Nitride (gCN) is synthesized via simple pyrolysis method. The Graphitic Carbon Nitride-Polypyrrole nanotubes composite (gCNPNT) was prepared through micelles self-degraded template method by altering the amount of gCN. The structural, chemical, and morphology of the composite were characterized by X-Ray Diffraction, Fourier transform infrared spectra (FT-IR), Raman spectroscopy, and Field emission scanning electron microscopy (FESEM) techniques. Thermal stability was examined by thermal gravimetric analysis (TGA). The Electrochemical analysis of the Galvano charging-discharging (GCD) curves was achieved a high specific capacitance (Csp) of 514.28 F g-1 at a current density (CD) of 1.2 A g-1. The cyclic voltammetry (CV) curve for the gCNPNT electrode shows pseudocapacitive behavior with effective reduction and oxidation rate and exhibits a high Csp of 325 F g-1 at scan rate of 10 mV s- 1. These results demonstrate gCNPNT2 is a prominent candidate in energy and conversion device applications.
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页数:8
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