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A New Insight of Graphene oxide-Fe(III) Complex Photochemical Behaviors under Visible Light Irradiation

机译:可见光辐照下氧化石墨烯-Fe(III)配合物光化学行为的新认识

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摘要

Graphene oxide (GO) contains not only aromatic carbon lattice but also carboxyl groups which enhanced the aqueous solubility of GO. To study the transformation of GO nanosheets in natural environments, GO aqueous dispersion was mixed with Fe3+ ions to form photoactive complex. Under visible light irradiation, Fe(III) of the complex would be reduced to Fe(II) which could subsequently reduce highly toxic Cr(VI) to Cr3+. The electron of the reduction was contributed by the decarboxylation of carboxyl groups on GO and iron was acting as a catalyst during the photoreduction. On the other hand, the consumption of carboxyl groups may convert GO to rGO which are tend to aggregate since the decreased electrostatic repulsion and the increased π-π attraction. The formed Cr3+ may be electrostatically adsorbed by the rGO sheets and simultaneously precipitated with the aggregated rGO sheets, resulting the effective removal of chromium and GO nanosheets from the aqueous environment. This study may shed a light on understanding the environmental transformation of GO and guide the treatment of Cr(VI).
机译:氧化石墨烯(GO)不仅包含芳族碳晶格,还包含增强GO的水溶性的羧基。为了研究GO纳米片在自然环境中的转变,将GO水分散体与Fe 3 + 离子混合形成光活性配合物。在可见光照射下,该配合物的Fe(III)还原为Fe(II),随后可将剧毒的Cr(VI)还原为Cr 3 + 。还原的电子是由于GO上羧基的脱羧作用而引起的,铁在光还原过程中起着催化剂的作用。另一方面,羧基的消耗可将GO转化为rGO,由于静电排斥力的降低和π-π引力的增加,它们趋于聚集。形成的Cr 3 + 可能被rGO片静电吸附,并同时与聚集的rGO片一起沉淀,从而有效地从水性环境中去除了铬和GO纳米片。这项研究可能有助于了解GO的环境转化并指导Cr(VI)的处理。

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