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Aerogel materials with periodic structures imprinted with cellulose nanocrystals

机译:气凝胶材料周期性结构压印与纤维素纳米晶体

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Novel aerogel materials with periodic structures derived from chiral nematic liquid crystalline cellulose nanocrystals (CNCs) are reported. The liquid crystalline structure of phase-separated CNCs is locked by a simple solvent exchange method or silica condensation. Both cellulose and silica/cellulose aerogel materials were obtained after critical point drying, and subsequent calcination of the silica/cellulose composite afforded a silica aerogel with periodic order. Gas adsorption and electron microscopy studies revealed that these materials have high surface areas and a unique chiral nematic structure imparted from the helicoidal CNC template. This is a new, scalable approach to aerogel materials with highly anisotropic structures. The high porosity and periodic, chiral features of these new materials may make them suitable for applications that require anisotropic properties or as hard templates for the construction of other ordered aerogels.
机译:新型气凝胶材料周期性结构来自手性向列液晶纤维素纳米晶体(加工中心)报道。液体乳剂的晶体结构加工中心是由一个简单的锁溶剂交换方法或硅凝结。二氧化硅/纤维素气凝胶材料临界点干燥后,和随后的煅烧的硅/纤维素复合二氧化硅气凝胶与定期订单。气体吸附和电子显微镜研究透露,这些材料有很高的表面区域和一个独特的手性向列结构传授的螺旋面数控模板。气凝胶是一种新型的、可伸缩的方法材料高度各向异性结构。孔隙度和周期,这些手性特征新材料可能使它们适合应用程序需要各向异性特性或作为硬模板的施工其他命令气凝胶。

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