聚吡咯
材料科学
超级电容器
循环伏安法
纳米复合材料
化学工程
石墨氮化碳
电极
电解质
五氧化二铌
电化学
氢氧化钾
聚合
铌
纳米技术
复合材料
化学
聚合物
有机化学
催化作用
物理化学
光催化
工程类
冶金
摘要
Abstract Graphitic carbon nitride (GCN) has been employed as a supercapacitor electrode because of its high carbon‐to‐nitrogen ratio and flexible structure. However, its low surface area and poor conductivity continue to be obstacles for practical usage. GCN's electrochemical characteristics are enhanced by the hybrid structure it forms with polypyrrole and Nb 2 O 5 . The synthesized polypyrrole (Ppy)/GCN/niobium pentoxide (Nb 2 O 5 ) (Ppy/GCN/Nb 2 O 5 ) nanocomposite electrode was tested for supercapacitance by cyclic voltammetry (CV) and Alternating current impedance techniques in 6 M Potassium hydroxide(KOH) electrolyte. The Ppy/GCN/Nb 2 O 5 is linked to a network of agglomerated GCN and Nb 2 O 5 nanoparticles with additional spherical shapes. The specific capacitance of Ppy/GCN/Nb 2 O 5 was determined to be 1177 Fg −1 at a current density of 5 Ag −1 . The Ppy/GCN/Nb 2 O 5 electrode in KOH has average specific energy and specific power densities of 33 Wh kg −1 and 2991 W kg −1 , respectively. The electrode showed excellent capacitance‐retention ability of 97% after 10,000 cycles. The results demonstrate the high stability and efficient performance of the Ppy/GCN/Nb 2 O 5 electrode employed in supercapacitors. The performance of the Ppy/GCN/Nb 2 O 5 electrode was found to be superior to those reported for other carbon‐based materials.
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