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A facile synthesis of porous graphene for efficient water and wastewater treatment

机译:轻松合成多孔石墨烯以有效处理水和废水

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摘要

The use of two-dimensional graphene-based materials in water treatment has recently gained significant attention due to their unique electronic and thermal mobility, high surface area, high mechanical strength, excellent corrosion resistance and tunable surface chemistry. However, the relatively expensive, poor hydrophobicity, low adsorption capacity and recyclability, and complex post-treatment of the most pristine graphene frameworks limit their practical application. Here, we report a facile scalable method to produce highly porous graphene from reduced graphene oxide via thermal treatment without addition of any catalyst or use of any template. Comparing to conventional graphene counterparts, as-prepared porous graphene nanosheets showed evident improvement in hydrophobicity, adsorption capacity, and recyclability, making them ideal candidate materials for water treatment. Superhydrophobic and superoleophilic porous graphene prepared in this work has been demonstrated as effective absorbents for a broad range of ions, oils and organic solvents, exhibiting high selectivity, good recyclability, and excellent absorption capacities > 90%. The synthesis method of porous graphene reported in this paper is easy to implement, low cost and scalable. These attributes could contribute towards efficient and cost-effective water purification and pollution reduction.
机译:二维石墨烯基材料在水处理中的使用最近因其独特的电子和热迁移率,高表面积,高机械强度,出色的耐腐蚀性和可调节的表面化学而受到了广泛关注。然而,大多数原始石墨烯骨架的相对昂贵,疏水性差,吸附能力和可回收性低以及复杂的后处理限制了它们的实际应用。在这里,我们报告了一种简便的可扩展方法,可通过热处理从还原的氧化石墨烯生产高度多孔的石墨烯,而无需添加任何催化剂或使用任何模板。与常规的石墨烯对应物相比,所制备的多孔石墨烯纳米片在疏水性,吸附能力和可回收性方面显示出明显的改善,使其成为水处理的理想候选材料。这项工作中制备的超疏水和超亲油性多孔石墨烯已被证明是对各种离子,油和有机溶剂的有效吸收剂,具有高选择性,良好的可回收性和出色的吸收能力(≥90%)。本文报道的多孔石墨烯的合成方法易于实现,成本低廉且可扩展。这些属性可以有助于高效和具有成本效益的水净化和减少污染。

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