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ZnO and reduced graphene oxide electrodes for all-in-one supercapacitor devices

机译:氧化锌和氧化石墨烯电极一体化的超级电容器设备

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Reduced graphene oxide/zinc oxide (rGO/ZnO) hybrid nanocomposites were prepared from synthesized GO and high energy ball milled (HEBM) ZnO for supercapacitor electrodes. Evolution of intrinsic point defects and defect-induced morphological, structural and size-dependent properties of rGO/ZnO hybrid nanocomposites were investigated using electron paramagnetic resonance (EPR) spectroscopy. CV, PEIS and GCPL techniques were employed to investigate the electrochemical behavior of the electrode materials and the effects of defects on the electrochemical performance of the electrodes by using the standard two-electrode cell in a 6 M KOH electrolyte. Analyses of the obtained CV and impedance profiles have shown the pseudocapacitive and EDLC-type contributions in the supercapacitors. Cycling stabilities were evaluated using galvanostatic charge–discharge curves at current densities between 0.10 and 2.40 A g−1. The capacitance retention of all electrodes was found to be 100% after 30 cycles at 0.30 A g−1. The electrochemical analyses revealed that the incorporation of ZnO that is rich in core defects improved the charge transfer performance and ion diffusion of the rGO electrode.
机译:减少氧化石墨烯/氧化锌(rGO /氧化锌)混合纳米复合材料是由合成和高能球磨(HEBM)氧化锌超级电容器电极。点缺陷和defect-induced形态,结构和尺度依赖的性质rGO /氧化锌混合纳米复合材料利用电子顺磁共振(EPR)光谱学。采用调查电化学电极材料和行为在电化学影响的缺陷电极使用的性能6米KOH标准二电极细胞电解液。阻抗资料显示pseudocapacitive EDLC-type贡献超级电容器。评估使用恒电流充放电曲线在电流密度在0.10和2.40之间g−1。电极被发现100%,30个周期在0.30 g−1。显示的氧化锌丰富的核心缺陷提高了电荷转移性能和离子扩散rGO电极。

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