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Sonochemical preparation and characterization of rGO/SnO2 nanocomposite: Electrochemical and gas sensing performance

机译:rgo / SnO2纳米复合材料的儿童化学制备及表征:电化学和气体传感性能

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The present investigation deals with solution-based sonochemical production of graphene oxide (GO) and reduced graphene oxide-SnO2 (rGO/SnO2) nanocomposite. These rGO/SnO2 nanocomposites were analysed with XRD, TEM, FTIR and UV/visible techniques. While synthesizing rGO/SnO2 nanocomposites, use of the ultrasound generated cavitational events which has evidently improved the uniform deposition of SnO2 on graphene nanosheets. These rGO/SnO2 nanocomposites were explored for their potential electrochemical as well as gas sensing applications. The cyclic voltammetry (CV) studies revealed a good electrochemical performance of rGO/SnO2 nanocomposite with a specific capacitance of 35 F/g. Further, the influence of NO2 gas concentration was investigated on rGO/SnO2 nanocomposite based sensor at various temperatures. The nanocomposite displayed the highest response of 99.9% with a very short response time of 14 s for 100 ppm concentration of NO2 gas at 150 degrees C. These sonochemically derived rGO/SnO2 nanocomposite based sensor showed excellent performance towards NO2 gas compared to other selected gases under the same conditions.
机译:本发明的调查涉及基于溶液的石化生产石墨烯(GO)和还原氧化石墨烯-SnO2(RGO / SnO2)纳米复合材料。用XRD,TEM,FTIR和UV /可见技术分析这些Rgo / SnO2纳米复合材料。在合成rgo / snO2纳米复合材料时,使用超声产生的空化事件,其显然改善了SnO2在石墨烯纳米片上的均匀沉积。探索了这些RGO / SnO2纳米复合材料,用于它们的电势电化学以及气体传感应用。循环伏安法(CV)研究揭示了RGO / SnO2纳米复合材料的良好电化学性能,具有35f / g的特定电容。此外,在各种温度下研究了在RGO / SnO2纳米复合材料的传感器上研究了NO 2气体浓度的影响。纳米复合材料显示出99.9%的最高响应,在150摄氏度下为100ppm浓度为100ppm浓度为100ppm浓度的最高响应。这些Sonochemically衍生的rgo / snO2纳米复合材料与其他选定的气体相比表现出优异的No2气体性能。在相同的条件下。

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