Structural and electrochemical insights into bismuth-based metal organic framework for capacitive applications
Résumé
The growing need for efficient energy storage has revealed key limitations in conventional battery-type electrodes, particularly their low electrical conductivity and limited cycling stability. To address this issue, a Bi-1,4-benzenedicarboxylate (Bi-OF) metal organic framework was synthesized in the form of nanosheets using a simple solvothermal method. The structure of Bi-OF was examined using Fourier transform infrared spectroscopy (FTIR), X-ray diffraction (XRD), scanning electron microscopy (SEM), and transmission electron microscopy (TEM). The Bi-OF material was used to modify the glassy carbon electrode (GCE), and its electrochemical performance was systematically evaluated. Its electrochemical behavior was evaluated through cyclic voltammetry (CV), charge-discharge (CD) testing, and electrochemical impedance spectroscopy (EIS). The Bi-OF electrode achieved a high specific capacitance of 1797.88 C·g⁻¹ (1284.2 F·g⁻¹) at 2.0 A·g−1. It also showed low internal resistance (110 Ω) and maintained 84.7% of its initial capacitance after 3000 cycles. These results suggest that Bi-OF is a promising candidate for high-performance and environmentally friendly supercapacitor applications.
Citer ce document
Accès au document
Texte intégral en lecture en ligne, réservé aux abonnés SPHAERO et aux membres de l'institution. Se connecter
Voir l'article sur le site de la revueAuteur(s)
Statistiques
Consultations : 1
Téléchargements : 0