首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Highly adsorptive graphene aerogel microspheres with center-diverging microchannel structures
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Highly adsorptive graphene aerogel microspheres with center-diverging microchannel structures

机译:具有中心散布的微通道结构的高吸附性石墨烯气凝胶微球

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摘要

The graphene oxide aerogel microspheres were prepared by a novel approach, i.e. a combination of electrospraying and freeze-casting. The unique well-defined "center-diverging microchannel" dandelion-like structures were observed in the aerogel microspheres and a formation mechanism of the structure, i.e. radial-directional freezing-thawing, was proposed. After further thermal reduction, the reduced graphene oxide aerogel microspheres were obtained and the center-diverging microchannel structures can be remained. Due to their highly porous, hierarchical and hydrophobic structure as well as a random packing effect, the aerogel microspheres possess excellent adsorption ability for various organic solvents and oils, showing their potential applications in environmental pollutant treatment.
机译:氧化石墨烯气凝胶微球通过新颖的方法制备,即电喷雾和冷冻浇铸的组合。在气凝胶微球中观察到独特的明确定义的“中心扩散微通道”蒲公英样结构,并提出了该结构的形成机理,即径向冷冻-解冻。进一步热还原后,获得还原的氧化石墨烯气凝胶微球,并且可以保留中心分散的微通道结构。气凝胶微球由于具有高度的多孔性,分层性和疏水性结构以及无规堆积效应,因此对各种有机溶剂和油类均具有出色的吸附能力,显示出其在环境污染物处理中的潜在应用。

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