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Graphene-coated materials using silica particles as a framework for highly efficient removal of aromatic pollutants in water

机译:石墨烯涂层材料采用二氧化硅颗粒作为高效除去水中芳香族污染物的框架

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The substantial aggregation of pristine graphene nanosheets decreases its powerful adsorption capacity and diminishes its practical applications. To overcome this shortcoming, graphene-coated materials (GCMs) were prepared by loading graphene onto silica nanoparticles (SiO2). With the support of SiO2, the stacked interlamination of graphene was held open to expose the powerful adsorption sites in the interlayers. The adsorption of phenanthrene, a model aromatic pollutant, onto the loaded graphene nanosheets increased up to 100 fold compared with pristine graphene at the same level. The adsorption of GCMs increased with the loading amount of the graphene nanosheets and dramatically decreased with the introduction of oxygen-containing groups in the graphene nanosheets. The highly hydrophobic effect and the strong π-π stacking interactions of the exposed graphene nanosheets contributed to their superior adsorption of GCMs. An unusual GCM peak adsorption coefficient ( K d) was observed with the increase in sorbate concentration. The sorbate concentration at peak K d shifted to lower values for the reduced graphene oxide and graphene relative to the graphene oxide. Therefore, the replacement of water nanodroplets attached to the graphene nanosheets through weak non-hydrogen bonding with phenanthrene molecules via strong π-π stacking interactions is hypothesized to be an additional adsorption mechanism for GCMs.
机译:原始石墨烯纳米片的大量聚集降低了其强大的吸附能力,并减少了其实际应用。为了克服这种缺点,通过将石墨烯加载到二氧化硅纳米颗粒上(SiO 2 )来制备石墨烯涂覆的材料(GCMS)。随着SiO 2 的支持,将石墨烯的堆叠互连保持开放,以暴露中间层中的强大的吸附位点。与在相同水平相同的原始石墨烯相比,菲施氮到装载的石墨烯纳米片上的菲芳族污染物的吸附增加至100倍。 GCMS的吸附随着石墨烯纳米片的装载量增加,并随着石墨烯纳米片中引入含氧基团而显着降低。高疏水效应和暴露的石墨烯纳米片的强π-π堆叠相互作用导致其优异的GCMS吸附。通过增加山梨酸盐浓度,观察到不寻常的GCM峰吸附系数(K D )。峰值K D 相对于石墨烯氧化物的较低的石墨烯氧化物和石墨烯移位至较低值。因此,通过通过强π-π堆叠相互作用与菲分子的弱非氢键合附着在石墨烯纳米晶片上的水纳米型纳米液体被假设为GCMS的另外的吸附机制。

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