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DESIGN OF INORGANIC AND INORGANIC-ORGANIC HYBRID MATERIALS BY SOL-GEL PROCESSING - FROM NANOSTRUCTURES TO HIERARCHICAL NETWORKS

机译:通过溶胶-凝胶工艺设计无机和无机-有机混合材料-从纳米结构到分层网络

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The preparation of porous hierarchical architectures that have structural features spanning from the nanometer to micrometer and even larger dimensions which in addition exhibit defined functionalities is one of today's challenges in materials chemistry. Sol-gel chemistry is a versatile tool for the formation of inorganic as well as inorganic-organic hybrid materials. Controlled hydrolysis and condensation reactions of (organo)alkoxysilanes allow the combination with organic entities and even their deliberate positioning in an inorganic network on the nanometer level. Moreover, not only the chemical composition, but also the structure of the final material is easily controlled on different length scales from the nanometer level up to the macroscopic morphology. In the present paper, opportunities from the application of novel diol-modified silanes are discussed for the synthesis of hierarchically organized inorganic, but also inorganic-organic porous monoliths. In addition, strategies for macroscopic shaping of hybrid materials with hierarchical porosity as well as exotemplating approaches are presented. In addition, strategies for macroscopic shaping of hybrid materials with hierarchical porosity as well as exotemplating approaches are presented.
机译:具有从纳米到微米甚至更大尺寸的结构特征的多孔层级结构的制备,此外还显示出确定的功能性,这是材料化学当今的挑战之一。溶胶-凝胶化学是用于形成无机以及无机-有机杂化材料的通用工具。 (有机)烷氧基硅烷的受控水解和缩合反应允许与有机实体结合,甚至允许它们故意定位在纳米级的无机网络中。而且,不仅化学成分,而且最终材料的结构也易于在从纳米水平到宏观形态的不同长度尺度上进行控制。在本文中,讨论了新型二醇改性硅烷的应用机会,用于合成分层组织的无机以及无机-有机多孔整料。此外,提出了具有分层孔隙率的混合材料的宏观成形策略以及放样方法。此外,提出了具有分层孔隙率的混合材料的宏观成形策略以及放样方法。

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