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Enhancement of Adsorption Performance for Organic Molecules by Combined Effect of Intermolecular Interaction and Morphology in Porous rGO-Incorporated Hydrogels

机译:通过分子间相互作用和掺入多孔rgo掺入水凝胶中的分子间相互作用和形态的组合效应来增强有机分子的吸附性能

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In this study, we developed reduced graphene oxide (rGO)-incorporated porous agarose (Ar-rGO) composites that were prepared via a "one-pot" sol-gel method involving a mixing and vacuum freeze-drying process. These composites represent an easy-to-use adsorbent for organic contaminant removal. Ar-rGOs can efficiently adsorb organic molecules, especially aromatic organic compounds from wastewater, because of the synergistic effect between the agarose bundles, which function as a water absorption site, and the rGO sheets, which function as active sites for pollutant binding. The pore structures and morphology of the Ar-rGO composites varied according to the added rGO, resulting in effective water infiltration into the composites. The main adsorption mechanism of the aromatic organic compounds onto Ar-rGOs involved pi-pi interactions with the rGO sheets. The surface interaction was more effective for adsorbing/desorbing the aromatic pollutants than the electrostatic interaction via the O-containing functional groups. In addition, we confirmed that Ar-rGO is highly stable over the entire pH range (1-13) because of the presence of the rGO sheets.
机译:在这项研究中,我们开发了通过涉及混合和真空冷冻干燥方法的“单罐”溶胶 - 凝胶法制备的石墨烯氧化物(RGO) - 丙二氧化物多孔琼脂糖(Ar-RGO)复合材料。这些复合材料代表了易于使用的吸附剂,用于有机污染物去除。 Ar-RGOS可以有效地吸附有机分子,特别是来自废水的芳族有机化合物,因为琼脂糖束之间的协同效应,其用作吸水性位点和rgo片材,其用作污染物结合的活性位点。 Ar-Rgo复合材料的孔结构和形态根据添加的rgo而变化,导致有效的水浸润到复合材料中。芳族有机化合物在Ar-RGOS上的主要吸附机制涉及与RGO片材的PI-PI相互作用。表面相互作用对于吸附/解吸芳族污染物比含O含o官能团的静电相互作用更有效。此外,由于rgo板材存在,我们确认Ar-Rgo在整个pH范围内高度稳定(1-13)。

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