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Synthesis, Characterization, Photocatalytic and Electrochemical Studies of Reduced Graphene Oxide Doped Nickel Oxide Nanocomposites

机译:石墨烯掺杂氧化镍纳米复合材料的合成,表征,光催化和电化学研究

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Elimination of organic pollutants from waste waters under the sunlight irradiation is a venerable challenge in the fields of environmental and materials science. This work aims to the fabrication of novel self-assembled, controlled rGO@NiO nanocomposite using eco-friendly simple co-precipitation method. The crystallite size, morphology and optical properties of the rGO, NiO and rGO@NiO were characterized using TG/DTA, FTIR, UV, XRD, SEM with EDAX and TEM techniques. The optical bandgap of the pure NiO, rGO and rGO@NiO nanocomposites was estimated as 3.75, 5.43 and 3.64 eV, respectively. Hence rGO@NiO nanocomposite might be considered as a semiconductor and can be utilized as a photocatalyst. The photocatalytic activity of prepared rGO@NiO nanocomposite was evaluated by using rhodamine B and methyl violet dyes. The degradation results revealed that almost 90% of dye degradation is carried out within a period of 60 min. The cyclic voltammetry studies indicated that the prepared rGO@NiO nanomaterials exhibited appreciable super capacitance value (233 F g"1) at a current density of 1 A g"1.
机译:在环境和材料科学领域,在阳光照射下消除废水中的有机污染物是一项古老的挑战。这项工作的目的是制造新型的自组装可控硅rGO@NiO纳米复合材料采用环保简单共沉淀法。研究了rGO、NiO和TiO2的晶粒尺寸、形貌和光学性质rGO@NiO采用TG/DTA、FTIR、UV、XRD、SEM、EDAX和TEM技术对产物进行了表征。纯NiO、rGO和NiO的光学带隙rGO@NiO纳米复合材料的估算值分别为3.75、5.43和3.64 eV。因此rGO@NiO纳米复合材料可以被认为是一种半导体,可以用作光催化剂。制备的催化剂的光催化活性rGO@NiO用罗丹明B和甲基紫染料对纳米复合材料进行了评价。降解结果表明,近90%的染料降解是在60分钟内完成的。循环伏安法研究表明,制备的rGO@NiO当电流密度为1 a g“1时,纳米材料表现出明显的超电容值(233 F g”1)。

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