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Structure-Property Relationships in Porous 3-D Nanostructures as a Function of Preparation Conditions: Isocyanate Cross-Linked Silica Aerogels

机译:多孔3-D纳米结构的结构-性能关系作为制备条件的函数:异氰酸酯交联的二氧化硅气凝胶

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摘要

Sol-gel derived silica aerogels are attractive candidates for many unique thermal, optical, catalytic, and chemical applications because of their low density and high mesoporosity. However, their inherent fragility has restricted use of aerogel monoliths to applications where they are not subject to any load. We have previously reported cross-linking the mesoporous silica structure of aerogels with di-isocyanates, styrenes or epoxies reacting with amine decorated silica surfaces. These approaches have been shown to significantly increase the strength of aerogels with only a small effect on density or porosity. Though density is a prime predictor of properties such as strength and thermal conductivity for aerogels, it is becoming clear from previous studies that varying the silica backbone and size of the polymer cross-link independently can give rise to combinations of properties which cannot be predicted from density alone. Herein, we examine the effects of four processing parameters for producing this type of polymer cross-linked aerogel on properties of the resulting monoliths. We focus on the results of 13C CP-MAS NMR which gives insight to the size and structure of polymer cross-link present in the monoliths, and relates the size of the cross-links to microstructure, mechanical properties and other characteristics of the materials obtained.
机译:溶胶凝胶衍生的二氧化硅气凝胶因其低密度和高介孔性而成为许多独特的热,光学,催化和化学应用的诱人候选物。然而,它们固有的脆弱性限制了气凝胶单块的使用,使其不能承受任何负荷。我们以前曾报道过气凝胶的介孔二氧化硅结构与与胺修饰的二氧化硅表面反应的二异氰酸酯,苯乙烯或环氧树脂发生交联。已经证明这些方法可显着提高气凝胶的强度,而对密度或孔隙率的影响很小。尽管密度是气凝胶强度和热导率等性能的主要指标,但从先前的研究中可以清楚地看出,改变二氧化硅骨架和聚合物交联键的大小可以独立产生各种性能组合,而这些组合不能通过以下方法进行预测仅密度。在本文中,我们研究了用于生产这种类型的聚合物交联气凝胶的四个工艺参数对所得整料性能的影响。我们关注于13C CP-MAS NMR的结果,该结果可洞察整体结构中存在的聚合物交联的尺寸和结构,并将交联的尺寸与所获得材料的微观结构,机械性能和其他特性相关。

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