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Bio-inspired surface-functionalization of graphene oxide for the adsorption of organic dyes and heavy metal ions with a superhigh capacity

机译:生物启发性氧化石墨烯的表面功能化,用于超高容量吸附有机染料和重金属离子

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By utilizing the synergistic effect of poly-dopamine (PD) with functional groups and graphene oxide (GO) with a high surface area, a series of sub-nano thick PD layer coated GO (PD/GO) composites were fabricated by a well-controlled self-polymerization of dopamine via catechol chemistry and used for effectively decontaminating wastewater. The obtained PD/GO could selectively adsorb the dyes containing an Eschenmoser structure and showed an extremely high adsorption capacity up to 2.1 g g~(-1), which represents the highest value among dye adsorptions reported so far. The adsorption mechanism was investigated by FTIR analysis, solution pH effect, and some control experiments. It was concluded that the adsorption process was based on the Eschenmoser salt assisted 1,4-Michael addition reaction between the ortho position of the catechol phenolic hydroxyl group of PD and Eschenmoser groups in the dyes. The adsorption isotherms were explored according to the Langmuir and Freundlich models respectively, and matched well with the Langmuir model. The thermodynamic parameters (AH, AG, AS, and E) were also calculated, which suggested an exothermic and spontaneous adsorption process. In addition, PD/GO exhibited an improved adsorption capacity for heavy metal ions (53.6 mg g~(-1) for Pb~(2+), 24.4 mg g~(-1) for Cu~(2+), 33.3 mg g~(-1) for Cd~(2+), and 15.2 mg g~(-1) for Hg~(2+), respectively) than pure PD and GO. Our results indicate the effectiveness of the synergistic effect of individual components on designing new functional composites with high performance.
机译:利用具有功能基团的聚多巴胺(PD)和具有高表面积的氧化石墨烯(GO)的协同效应,可以通过良好的制备一系列亚纳米厚的PD涂层的GO(PD / GO)复合材料。通过儿茶酚化学控制多巴胺的自聚合,并用于有效净化废水。所获得的PD / GO可以选择性地吸附具有Eschenmoser结构的染料,并显示出高达2.1 g g〜(-1)的极高吸附容量,这是迄今为止报道的染料吸附中最高的。通过FTIR分析,溶液pH值影响和一些对照实验研究了吸附机理。结论是,吸附过程是基于PD的邻苯二酚酚羟基的邻位与染料中Eschenmoser基团之间的Eschenmoser盐辅助的1,4-Michael加成反应。分别根据Langmuir和Freundlich模型探索了吸附等温线,并与Langmuir模型很好地匹配。还计算了热力学参数(AH,AG,AS和E),这表明放热和自发吸附过程。此外,PD / GO对重金属离子的吸附能力有所提高(对Pb〜(2+)的吸附量为53.6 mg g〜(-1),对Cu〜(2+)的吸附量为24.4 mg g〜(-1),33.3 mg Cd〜(2+)的g〜(-1)和Hg〜(2+)的15.2 mg g〜(-1))。我们的结果表明,在设计具有高性能的新型功能复合材料时,各个组件的协同效应是有效的。

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