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Synthesis of graphene aerogels using cyclohexane and n-butanol as soft templates

机译:用环己烷和正丁醇作为软模板合成石墨烯空气凝胶

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摘要

Graphene aerogels (GAs) were synthesized via a one-step hydrothermal method. Generally, the pore shape and diameter of GAs are difficult to control or the preparation process is complicated, requiring a multi-step operation. Herein, a soft-template one-step hydrothermal synthesis process was proposed to produce GAs with controllable pore sizes. Cyclohexane and n -butanol were added to a graphene oxide suspension to form a uniform aqueous dispersion under emulsification by sodium lauryl sulfate. The reduction process may have occurred around the organic droplets during the hydrothermal reaction, and a large number of organic droplets became countless physical barriers inside the hydrogel. In the later freeze-drying and high-temperature calcination procedures, the droplets evaporated to form a rich pore structure. Compared to the conventional templating method, the organic template was volatilized during the drying process such that no additional process for removing the template was required. In addition, GAs prepared by the template method possessed lower density (2.66 mg cm ~(?3) ) and better compression performance and, as an adsorbent material, absorbed organic matter and petroleum from wastewater more efficiently than GAs obtained by the traditional one-step hydrothermal method; Q for n -hexane reached 116, and Q for xylene reached 147; also, the GAs prepared by the soft template method can absorb all crude oil in water samples within 30 s.
机译:通过一步水热法合成石墨烯气孔(气体)。通常,气体的孔形和直径难以控制,或者制备过程复杂,需要多步操作。在此,提出了一种软模板一步水热合成过程,以产生具有可控孔径的气体。将环己烷和N-丁醇加入到石墨烯氧化物悬浮液中,以通过十二烷基硫酸钠乳化形成均匀的水分散体。在水热反应过程中,可以在有机液滴周围发生还原过程,并且大量有机液滴成为水凝胶内无数的物理屏障。在后期的冷冻干燥和高温煅烧程序中,液滴蒸发以形成丰富的孔隙结构。与传统的模板方法相比,在干燥过程中挥发有机模板,使得不需要除去模板的另外的方法。此外,通过模板方法制备的气体具有较低的密度(2.66mg cm〜(α3))和更好的压缩性能,并且作为吸附材料,从废水中吸收有机物质和石油比通过传统的气体更有效地获得 - 步水热法;对于N-己烷达到116的Q,Q为二甲苯达到147;而且,软模板法制备的气体可以在30秒内吸收水样中的所有原油。

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