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Carbon nanotube-bonded graphene hybrid aerogels and their application to water purification

机译:碳nanotube-bonded石墨烯混合气凝胶水净化和他们的应用程序

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We present carbon nanotube (CNT)-bonded graphene hybrid aerogels that are prepared by growing CNTs on a graphene aerogel surface with nickel catalyst. The presence of bonded CNTs in the graphene aerogel results in vastly improved mechanical and electrical properties. A significant increase in specific surface area is also realized. The presence of the CNTs transforms the hybrid aerogels into a mesoporous material. The viscoelasticity of the hybrid aerogels is found to be invariant with respect to temperature over a range of between -150 degrees C and 450 degrees C. These characteristics along with the improved properties make the hybrid aerogels an entirely different class of material with applications in the fields of biotechnology and electrochemistry. The mesoporous nature of the material along with its high specific surface area also makes the hybrid aerogel attractive for application in water treatment. Both anionic and cationic dyes can be effectively removed from water by the hybrid aerogel. A number of organics and oils can be selectively separated from water by the hybrid aerogel. The hybrid aerogel is easy to handle and separate from water due to its magnetic nature, and can readily be recycled and reused.
机译:我们目前的碳纳米管(CNT)保税石墨烯混合的气凝胶是由生长碳纳米管与镍在石墨烯气凝胶的表面催化剂。石墨烯气凝胶结果大大改善机械和电气性能。在比表面积显著增加也意识到。将混合的气凝胶转换成介孔材料。气凝胶是不变的对温度在-150度之间的范围C和450度C。这些特征改进的属性使混合气凝胶一个完全不同的一类材料与应用程序领域的生物技术和电化学。材料连同其高的比表面积区域也使得气凝胶混合有吸引力在水处理中的应用。阳离子染料可以有效地除去水的混合凝胶。和油可以有选择地从水中分离出来混合的气凝胶。来处理,由于其独立于水磁性质,很容易被回收重用。

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