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(00885)Electrochemical properties of SnO_2/rGO nanocomposites

机译:(00885)SnO_2 / RGO纳米复合材料的电化学性质

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SnO2 nanoparticles were deposited on reduced graphene oxide (rGO)to obtain SnO_2/rGO composites with high energy storage capacitance. For this purpose, graphite oxide (GtO)was synthesized and hydrothermally treated in presence of Sn precursor. The quantity of GtO was varied to tune the heterostructures' composition and the particles size of the SnO_2. The XRD and SEM analyses revealed that the GtO was exfoliated, reduced and decorated with SnO2 nano-particles during the hydrothermal treatment. With the increase of GtO quantity the SnO2 particle size decreased from ~30 nm to ~14 nm. The Cyclic Voltammetry analysis showed that the pure rGO exhibited typical supercapacitor behavior. All the SnO_2/rGO composites exhibited significantly increased specific capacitance in comparison to the pure SnO_2. The SnO_2/rGO with the highest GtO content showed capacitance ~ 200 F.g-1 that was comparable to that of the pure rGO. The result was related to the small particles size of SnO_2 and their distribution between the rGO sheets.
机译:将SnO2纳米颗粒沉积在氧化石墨烯(RGO)上沉积,得到具有高能量存储电容的SnO_2 / Rgo复合材料。为此目的,在Sn前体存在下合成并水热处理石墨氧化物(GTO)。 GTO的量变化以调谐异质结构的组合物和SnO_2的颗粒尺寸。 XRD和SEM分析显示,在水热处理期间,通过SnO2纳米颗粒剥落,减少和装饰GTO。随着GTO量的增加,SnO2粒度从〜30nm降低至〜14nm。循环伏安分析表明,纯RGO表现出典型的超级电容器行为。与纯SnO_2相比,所有SNO_2 / RGO复合材料都表现出显着增加的特定电容。 SnO_2 / Rgo具有最高的GTO含量显示电容〜200f1-1,与纯RGO相当。结果与SnO_2的小颗粒尺寸有关,并且在RGO板之间的分布。

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