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Mesoporous graphite nanoflakes via ionothermal carbonization of fructose and their use in dye removal

机译:通过果糖离子碳化的中孔石墨纳米薄膜及其在染料中使用

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The large-scale green synthesis of graphene-type two-dimensional materials is still challenging. Herein, we describe the ionothermal synthesis of carbon-based composites from fructose in the iron-containing ionic liquid 1-butyl-3-methylimidazolium tetrachloridoferrate( III ), [Bmim][FeCl _(4) ] serving as solvent, catalyst, and template for product formation. The resulting composites consist of oligo-layer graphite nanoflakes and iron carbide particles. The mesoporosity, strong magnetic moment, and high specific surface area of the composites make them attractive for water purification with facile magnetic separation. Moreover, Fe _(3) C-free graphite can be obtained via acid etching, providing access to fairly large amounts of graphite material. The current approach is versatile and scalable, and thus opens the door to ionothermal synthesis towards the larger-scale synthesis of materials that are, although not made via a sustainable process, useful for water treatment such as the removal of organic molecules.
机译:石墨烯二维材料的大规模绿色合成仍然具有挑战性。在此,我们描述了来自含铁离子液体1-丁基-3-甲基咪唑酯(III),[Bmim] [FECL _(4)]的果糖中的碳基复合材料的离子合成用作溶剂,催化剂和产品形成模板。得到的复合材料由低聚层石墨纳米薄片和碳化铁颗粒组成。复合材料的中孔隙度,强磁矩和高比表面积使它们具有含水净化的含水分离。此外,可以通过酸蚀刻获得Fe _(3)无C-无C石墨,提供对相当大量的石墨材料的途径。目前的方法是通用的和可伸缩的,因此在较大的材料合成材料中打开门,尽管没有通过可持续的方法制造,但用于水处理,例如除去有机分子的水处理。

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