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Ultralight, highly elastic and bioinspired capillary-driven graphene aerogels for highly efficient organic pollutants absorption

机译:超轻,高弹性和生物悬浮的毛细管驱动石墨烯气凝胶,用于高效有机污染物吸收

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摘要

Inspired by capillary-driven pump existing in nature, a capillary-like hydrophobic GO/GONR-APTES composite aerogel (MGGNA) was creatively fabricated by crosslinking one-dimensional functional GONRs with three-dimensional graphene aerogel. The prepared MGGNA presented a very low density in the range of 2.32-4.11 mg cm(-3), high porosity (97.5-98.6%) and high surface area (45.1 m(2) g(-1)) as well as high compression and recoverability properties, recovering 96.6% when compressed to 90% strain in a dry environment. The adsorption of organic pollutants was carried by the capillary force through the capillary-like channels inside the MGGNA, and the super-absorption capacity for organic solvents was up to 447 g g(-1). The MGGNA exhibited excellent performance stability over repeated use in combustion and mechanical squeezing cycles. Meanwhile, the dynamic test illustrated the continuous and highly efficient in-situ oil/water separation. Such outstanding properties make the resulting MGGNA present the prospect of practical application in organic pollution cleanup.
机译:灵感来自于本质上存在的毛细管驱动泵,通过用三维石墨烯气凝胶交联一维官能喷射来创造毛细管样疏水性GO / GONR-APTE复合复合气凝胶(MGGNA)。制备的MGGNA在2.32-4.11mg cm(-3),高孔隙率(97.5-98.6%)和高表面积(45.1m(2)g(-1))以及高度的范围内呈现非常低的密度压缩和可回收性性质,在干燥环境中压缩至90%菌株时回收96.6%。有机污染物的吸附通过MGGNA内的毛细管样通道通过毛细管的力而携带,有机溶剂的超吸收能力高达447gg(-1)。 MGGNA在燃烧和机械挤压周期中重复使用的优异性能稳定性。同时,动态试验说明了持续且高效的原位油/水分离。这种出色的性质使得MGGNA呈现实际应用在有机污染清理中的前景。

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