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Comparison of electrophoretic deposition kinetics of graphene oxide nanosheets in organic and aqueous solutions

机译:石墨烯氧化物纳米液在有机溶液中的电泳沉积动力学的比较

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摘要

Electrophoretic deposition (EPD) of Graphene Oxide (GO) has been used in several applications but in a few studies, the kinetics of the process has been considered. In the present work, the EPD of GO in organic (ethanol) and aqueous (deionized water) solutions was carried out without any additives while in-situ measurement of mass and current density were performed. Furthermore, the resistance of the deposit, voltage drop, and the effective field along suspension during EPD have been studied. These results, alongside current density plots, indicated the reduction of GO on the surface of the anode in deionized water. Comparison of the mass results to the Hamaker model indicates good compatibility in deionized water across lower voltages, yet the differences tend to grow as the voltage is increased. However, in ethanol, parabolic changes in mass, lead to an incompatibility of mass variations and the model. The microstructure and thickness of the coatings were investigated by scanning electron microscopy (SEM) indicated that the maximum thickness of the coatings achieved in the appropriate voltage was about 3 mu m. It can be concluded that the type of solution is a critical factor in the EPD of GO which can affect the process and properties of the final coating.
机译:石墨烯(GO)的电泳沉积(EPD)已在几种应用中使用,但在几种研究中,已经考虑了该过程的动力学。在本作工作中,在没有任何添加剂的情况下进行在有机(乙醇)和含水(去离子水)溶液中进行的EPD,同时进行质量和电流密度的原位测量。此外,已经研究了沉积物,电压下降和EPD期间悬浮液的抵抗力。这些结果,以及电流密度图,表明在去离子水中的阳极表面的降低。对Hamaker模型的质量结果的比较表明,在较低电压下去离子水的良好相容性,随着电压的增加,差异趋于生长。然而,在乙醇中,抛物线变化质量,导致质量变化的不相容性和模型。通过扫描电子显微镜(SEM)研究了涂层的微观结构和厚度,表明在适当电压中实现的涂层的最大厚度为约3μm。可以得出结论,解决方案类型是持续环氧化态的关键因素,其可以影响最终涂层的过程和性质。

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