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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Density controlled oil uptake and beyond: from carbon nanotubes to graphene nanoribbon aerogels
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Density controlled oil uptake and beyond: from carbon nanotubes to graphene nanoribbon aerogels

机译:密度控制的油吸收及其他:从碳纳米管到石墨烯纳米带气凝胶

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摘要

Large-scale manipulation of the density (from 2.5 to 1327 mg cm(-3)) and wettability of carbon-based aerogels has been realized by delicately modulating the gelation, drying and post-treatment processes. An unexpected "Janus face" effect of pyrrole was revealed in the fabrication process. Pyrrole acts as a "spacer" at relatively low concentrations (ca. 5 vol%), leading to an increase of the aerogel density. By using systematic studies, the oil adsorption capacity of aerogels has been correlated with the aerogel density and surface wettability, which can guide the production of highly efficient sorbents. For example, a polydimethylsiloxane modified graphene nanoribbons aerogel with a density of 2.5 mg cm(-3) was prepared and showed a remarkable adsorption capacity of up to 302 times for phenixin and 121 times for n-hexane its own weight, much higher than that of most carbonaceous sorbents previously reported. Furthermore, a proof-of-concept aerogel-based floating-type densitometer has also been proposed to expand the potential applications of aerogels.
机译:碳基气凝胶的密度(从2.5到1327 mg cm(-3))和可湿性的大规模操纵已通过精细地调节胶凝,干燥和后处理过程来实现。在制造过程中发现了吡咯意外的“ Janus脸”效应。吡咯在相对较低的浓度(<约5 vol%)下充当“间隔物”,导致气凝胶密度降低;但是,“连接子”的行为在较高浓度(>约5体积%)时出现,导致气凝胶密度增加。通过系统的研究,气凝胶的吸油能力已经与气凝胶密度和表面润湿性相关联,可以指导高效吸附剂的生产。例如,制备了密度为2.5 mg cm(-3)的聚二甲基硅氧烷改性的石墨烯纳米带气凝胶,并显示出显着的吸附能力,对于苯ixin的吸附能力高达302倍,对自重正己烷的吸附能力高达121倍,远高于其自重。先前报道的大多数碳质吸附剂。此外,还提出了一种基于概念的基于气凝胶的浮式密度计,以扩展气凝胶的潜在应用。

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