High-performance electrode material synthesis via wet-chemical method: a study on NbN–Fe2O3 composite
摘要
The simple, efficient, and affordable synthesis of materials for supercapacitor applications has attracted much interest for practical uses. This study used a wet-chemical approach to produce a binary NbN–Fe2O3 composite, revealing its crystalline nature and suitability for supercapacitor electrodes. With a power density (Pd) of 7200 W kg−1 and an energy density (Ed) of 73 Wh kg−1, the NbN–Fe2O3 electrode demonstrated remarkable electrochemical performance along with a high specific capacitance (Cs) of 392 F g−1. Furthermore, under 10,000 cycles at 10 A g−1, it retained 91.1% cyclic stability. Because of these advantageous characteristics, NbN–Fe2O3 is a strong candidate for enhanced energy storage in SCs.