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Hybrid organic-inorganic nanocomposites fabricated with a novel biocompatible precursor using sol-gel processing

机译:使用溶胶-凝胶工艺用新型生物相容性前驱体制备的杂化有机-无机纳米复合材料

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摘要

The synthesis of hybrid organic-inorganic nanocomposite materials containing biopolymers by the sol-gel processing is often faced with severe difficulties owing to their poor compatibility with the common precursors. The problem was solved when tetrakis(2-hydroxyethyl) orthosilicate (THEOS) was recently suggested for the preparation of sol-gel derived nanocomposites. This article summarizes recent data on novel types of hybrid polysaccharide-silica nanocomposite materials fabricated with the help of THEOS. Their formation, properties and structure as well as features and possible mechanism for the sol-gel processes are considered. It is demonstrated that the novel approach is particularly suitable in situations where others are unsatisfactory. This includes systems of which supramolecular organization or phase state is sensitive to the pH of solutions, temperature and addition of organic solvents. One example of a successful application is the immobilization of labile enzymes. The biocompatibility of THEOS allows their activity to be retained, thereby enhancing long-term and thermal stabilities.
机译:由于它们与普通前体的相容性差,通过溶胶-凝胶法合成包含生物聚合物的杂化有机-无机纳米复合材料常常面临严重的困难。当最近建议使用四(2-羟乙基)原硅酸酯(THEOS)来制备溶胶-凝胶衍生的纳米复合材料时,该问题得以解决。本文总结了借助THEOS制备的新型杂化多糖-二氧化硅纳米复合材料的最新数据。考虑了它们的形成,性质和结构以及特征和可能的溶胶-凝胶过程机理。事实证明,该新方法特别适用于其他方法不令人满意的情况。这包括超分子组织或相态对溶液的pH,温度和有机溶剂的添加敏感的系统。成功应用的一个例子是不稳定酶的固定化。 THEOS的生物相容性使其活性得以保留,从而增强了长期稳定性和热稳定性。

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