One-Step Synthesis of 3D Nitrogen-doped Graphene Quantum Dots and Reduced Graphene Oxide Composites by a Hydrothermal Method for Supercapacitors Anodes

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Abstract

This work reports a feasible method to fabricate a simple chemical functionalization of graphene oxide (GO) electrode, One-step hydrothermal synthesis of nitrogen-doped graphene quantum dots modified reduced graphene oxide (NGDQs/rGO2) using ammonium citrate and graphene oxide (GO) as raw materials. Ammonium citrate effectively acts as a nitrogen dopant cum reducing agent for graphene which remarkably enhances its electrochemical properties. Diffraction of X-rays (XRD), Fourier transform infrared spectroscopy (FTIR), scanning electron microscopy (SEM), transmission electron microscope (TEM), X-ray photoelectron spectroscopy (XPS) were employed to characterize the structure and properties of the (NGDQs/rGO2), and the NGQDs/rGO2 was used as the electrode to test the electrochemical performance. According to the electrochemical test results, when the molar ratio of NGDQs to rGO is 1:2, the specific capacitance can reach 357 F/g at a current density of 1 A/g; after 1000 cycles, the capacitance retention rate is 82%. For comparison, under the same current density condition, the specific capacitance of the rGO electrode is only 74 F/g. Thus, the synthesized NGDQs/rGO2 using this simple, cost-effective, environment friendly method could be a potential candidate for high performance energy-storage applications.

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europepmc
last seen: 2026-05-19T01:45:01.086888+00:00
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License: CC-BY-4.0