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Advanced Chemical Reduction of Reduced Graphene Oxide and Its Photocatalytic Activity in Degrading Reactive Black 5

机译:还原氧化石墨烯的高级化学还原及其在降解活性黑5中的光催化活性

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摘要

Textile industries consume large volumes of water for dye processing, leading to undesirable toxic dyes in water bodies. Dyestuffs are harmful to human health and aquatic life, and such illnesses as cholera, dysentery, hepatitis A, and hinder the photosynthetic activity of aquatic plants. To overcome this environmental problem, the advanced oxidation process is a promising technique to mineralize a wide range of dyes in water systems. In this work, reduced graphene oxide (rGO) was prepared via an advanced chemical reduction route, and its photocatalytic activity was tested by photodegrading Reactive Black 5 (RB5) dye in aqueous solution. rGO was synthesized by dispersing the graphite oxide into the water to form a graphene oxide (GO) solution followed by the addition of hydrazine. Graphite oxide was prepared using a modified Hummers’ method by using potassium permanganate and concentrated sulphuric acid. The resulted rGO nanoparticles were characterized using ultraviolet-visible spectrophotometry (UV-Vis), X-ray powder diffraction (XRD), Raman, and Scanning Electron Microscopy (SEM) to further investigate their chemical properties. A characteristic peak of rGO-48 h (275 cm−1) was observed in the UV spectrum. Further, the appearance of a broad peak (002), centred at 2θ = 24.1°, in XRD showing that graphene oxide was reduced to rGO. Based on our results, it was found that the resulted rGO-48 h nanoparticles achieved 49% photodecolorization of RB5 under UV irradiation at pH 3 in 60 min. This was attributed to the high and efficient electron transport behaviors of rGO between aromatic regions of rGO and RB5 molecules.
机译:纺织工业消耗大量的水用于染料加工,导致水体中出现不良的有毒染料。染料对人类健康和水生生物有害,例如霍乱,痢疾,甲型肝炎等疾病,并阻碍水生植物的光合作用活动。为了克服这个环境问题,先进的氧化工艺是一种有前景的技术,可以使水系统中的多种染料矿化。在这项工作中,通过先进的化学还原途径制备了还原氧化石墨烯(rGO),并通过在水溶液中对活性黑5(RB5)染料进行光降解来测试其光催化活性。通过将氧化石墨分散在水中以形成氧化石墨烯(GO)溶液,然后添加肼来合成rGO。使用改良的Hummers方法,通过使用高锰酸钾和浓硫酸制备氧化石墨。使用紫外可见分光光度法(UV-Vis),X射线粉末衍射(XRD),拉曼和扫描电子显微镜(SEM)对得到的rGO纳米颗粒进行表征,以进一步研究其化学性质。在紫外光谱中观察到rGO-48 h(275 cm -1 )的特征峰。此外,在XRD中以2θ= 24.1°为中心的宽峰(002)的出现表明氧化石墨烯被还原为rGO。根据我们的结果,发现所得的rGO-48 h纳米粒子在60分钟的pH 3的紫外线辐射下实现了RB5的49%的光脱色。这归因于rGO的芳族区域和RB5分子之间rGO的高效电子传输行为。

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