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A facile One-pot Hydrothermal Approach for the Preparation of CuO/rGO Nanocomposites with Different Morphologies

机译:具有不同形态的CuO / Rgo纳米复合材料的CuO / Rgo纳米复合材料的容易单壶水热方法

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Graphene-based metal oxides such as CU_2O, SnO_2, CuO, Fe_3O_4, MnO_2 are promising candidates for many applications because of their advantageous properties. Amongst all, CuO has been widely studied because of its excellent electrocatalytic activity. Although many methodologies have been developed for the synthesis of CuO/graphene nanostructures with different morphologies including nanorods, nanoparticles, nanosheets, flower, urchin; not many investigations have been done on one pot synthesis method for CuO/reduced graphene oxide (rGO) nanocomposites to achieve different morphologies. Therefore in the present work effort has been made to synthesize various CuO-rGO nanocomposites via surfactant (CTAB) assisted hydrothermal method. Detailed study was performed to monitor the effect of various reaction parameters like temperature, reaction time, reactant concentration on the synthesized nanocomposites. Several analytical tools, including XRD, SEM, FTIR and UV-Vis spectroscopy have been utilized to characterize the samples. XRD results showed formation of monoclinic structure of CuO along with presence of rGO. Calculated optical bandgap studies indicate decrease in the bandgap of synthesized CuO (E_g=4.5eV-4.34eV) with increase in temperature from 120°C to 180°C. Our results clearly demonstrate that reaction parameters play a key role to bring out the optical and morphological changes in the CuO-rGO nanocomposites.
机译:基于石墨烯的金属氧化物如Cu_2O,SnO_2,CuO,Fe_3O_4,MnO_2是许多应用的候选者,因为它们是有利的。其中,CUO已被广泛研究,因为其优异的电催化活性。虽然已经开发了许多方法,用于合成CuO /石墨烯纳米结构,其中不同的形态,包括纳米棒,纳米粒子,纳米片,花,核素;对于CuO / Speed氧化石墨烯(RGO)纳米复合材料的一个盆合成方法已经在一个罐合成方法上进行了不多的研究,以实现不同的形态。因此,在本工作中,已经通过表面活性剂(CTAB)辅助水热法合成各种Cuo-Rgo纳米复合材料。进行详细研究以监测各种反应参数如温度,反应时间,合成纳米复合材料上的反应物浓度的效果。已经利用了几种分析工具,包括XRD,SEM,FTIR和UV-Vis光谱来表征样品。 XRD结果表明,CuO的形成与Rgo的存在。计算的光学带隙研究表明合成CuO(E_G = 4.5EV-4.34EV)的带隙的降低,其温度从120℃升高到180℃。我们的结果清楚地表明,反应参数发挥关键作用,以在Cuo-rgo纳米复合材料中发挥光学和形态变化。

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