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◆ Next Materials2025-12-12· Graphene

Artemisia vulgaris-assisted green synthesis of rGO-TiO2 nanocomposites for symmetrical supercapacitor electrode

Vinay Rawat, Vanshika Gairola, Bhupendra Rawat, Pankaj Chamoli

原始摘要(英文原文)· Original abstract
Present work demonstrates graphene oxide (GO) reduction to reduced graphene oxide (rGO) nanosheets using Artemisia vulgaris (Mugwort) leaf extract as a green reducing agent at low temperature. The extract's high phenolic content and strong antioxidant properties make it an effective and eco-friendly reducing agent over hazardous chemicals. Using similar approach, rGO-TiO 2 NCs has been synthesised successfully. X-ray diffraction (XRD), Raman spectroscopy, Fourier transform infrared spectroscopy (FTIR), UV–visible spectroscopy, and field emission scanning electron microscopy (SEM-EDX) have all been used to evaluate the produced rGO and rGO-TiO2 NCs. The significant reduction of GO's oxygen-containing functional groups into rGO is confirmed by Raman and EDX analysis. Further, synthesised rGO and rGO-TiO 2 NCs have been utilized for electrode materials for symmetrical supercapacitors (SSCs) electrodes. Electrochemical performances show remarkable cycle stability along with high specific capacitance around 304.4 F/g for rGO-TiO 2 NCs and 186.6 F/g for rGO at the current density of 2 A/g. The energy densities and power densities of rGO and rGO-TiO 2 NCs are found to be 9.3 W h/kg, 34.2 W h/kg and 669.6 W/kg, 898.6 W/kg. While cycling tests showed excellent retention of 97.2 % after 2000 cycles (100 mV/S). Notably, this method provides a simple, high-yield route for synthesizing rGO and rGO-TiO₂ NCs for boosting SSCs electrochemical performance.
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