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Incorporation of Graphene into Silica-based Aerogels and Application for Water Remediation

机译:石墨烯掺入二氧化硅基气凝胶中及其在水修复中的应用

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摘要

Graphene/silica nanocomposites in the form of highly porous aerogels are obtained for the first time by integrating a novel approach for the production of low defectivity graphene with a two-step route for the synthesis of a silica-based monolith. Different from the other synthetic methods, the use of cogelation of a dispersed phase and matrix followed by high temperature supercritical drying leads to well dispersed bilayered graphene inside a high surface area silica matrix with an open texture porosity. Physico-chemical characterization provides evidence that the developed graphene/SiO2 bulk aerogel nanocomposites combine the distinct features of both the dispersed graphene sheets and the porous silica aerogel matrix. It was found that incorporation of graphene in the aerogel, even at low loading, increases significantly the hydrophobic behaviour of the materials. This, combined with the high surface/volume ratio of the aerogel, makes the resulting nanocomposite a suitable candidate as a novel oil sorbent for water remediation. In particular, the developed graphene/silica aerogels selectively and quickly uptake oil, up to more than 7 times the aerogel sorbent mass, from oil-water mixtures, and keeps floating on water after absorbing the oil phase. The suitability of the developed composites as a class of novel sorbents for environmental remediation in the occurrence of flammable liquid spills, where burning represents a major threat, is supported by the specific features of silica aerogels such as a relative fire-resistance, in addition to the high porosity and hydrophobic nature.
机译:通过将生产低缺陷度石墨烯的新颖方法与合成二氧化硅基整料的两步路线相结合,首次获得了高度多孔气凝胶形式的石墨烯/二氧化硅纳米复合材料。与其他合成方法不同,使用分散相和基体进行胶凝后再进行高温超临界干燥,可在高表面积二氧化硅基体内部充分分散双层石墨烯,并具有开放的结构孔隙率。物理化学表征提供了证据,表明已开发的石墨烯/ SiO2本体气凝胶纳米复合材料结合了分散的石墨烯片和多孔二氧化硅气凝胶基质的独特特征。已经发现,即使在低负荷下,将石墨烯掺入气凝胶中也显着提高了材料的疏水性。这与气凝胶的高表面积/体积比相结合,使得所得的纳米复合材料成为用于水修复的新型油吸附剂的合适候选物。特别是,已开发的石墨烯/二氧化硅气凝胶可以选择性地,快速地从油-水混合物中吸收油,是气凝胶吸附剂质量的7倍以上,并在吸收油相后保持漂浮在水上。二氧化硅气凝胶的特殊功能(例如相对耐火性)支持开发的复合材料适合作为一类新型吸附剂,用于在易燃液体泄漏(燃烧是主要威胁)的发生中进行环境修复。高孔隙率和疏水性。

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