4.6 Article

Ultra-light nanocomposite aerogels of bacterial cellulose and reduced graphene oxide for specific absorption and separation of organic liquids

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RSC ADVANCES
卷 4, 期 41, 页码 21553-21558

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ROYAL SOC CHEMISTRY
DOI: 10.1039/c4ra02168a

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  1. LOEWE - Research Cluster Soft Control
  2. LOEWE - Research Cluster Sensors towards Terahertz STT

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Novel materials based on sustainable materials with high absorption capacity are still rare for the separation of organic liquids or oil spills and water. In this report, ultra-light nanocomposite aerogels consisting of sustainable bacterial cellulose (BC) and graphene oxide (GO) were constructed after an eco-friendly freeze-drying process for the first time. Due to the hydrophilic properties of both materials and the highly porous structure, BC/GO aerogels could highly absorb not only organic liquids, such as cyclohexane and DMF, but also water. Specific absorption for organic liquids was achieved after the reduction of GO using H-2 gas, which led to nanocomposite aerogels of BC and reduced GO. They could specifically absorb 135-150 g organic liquids per g of their own weight, even with a high content of 80% BC in the nanocomposite aerogel.

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