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High-Temperature Synthesis of Stable Ordered Mesoporous Materials Using Fluorocarbon Surfactants

机译:使用氟碳表面活性剂的稳定有序介孔材料的高温合成

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The hydrothermal stability of mesoporous materials is currently of great interest because of the requirement for potential applications. A number of successful examples of mesoporous materials with good hydrothermal stability have been reported recently. Notably, these mesostructured materials are prepared at room temperature or relatively low temperatures (80-150°C). This is quite different from the higher temperatures (150-250°C) used for the syntheses of many microporous zeolites or phosphates and is because surfactant molecules will not be able to direct mesoporous structure formation due to unfavorable conditions for micelle formation at the higher temperatures. As with silica-based materials, a critical factor in increasing Kydrothermal stability is to have more silica condensation on the pore walls, but low synthetic temperatures result in imperfectly condensed mesoporous walls with large amounts of terminal hydroxyl groups which make the mesostructure unstable. It can be expected that the level of silica condensation will be enhanced by increasing the crystallization temperature. Fluorocarbon surfactants are a kind of stable surfactants which are widely used at high temperatures (> 200°C). However, due to their rigidity and the strong hydrophobicity of the fluorocarbon chains, fluorocarbon surfactants are not suitable as templates for the preparation of well-ordered mesoporous mateials. We demonstrate here that when a fluorocarbon surfactant (C_3F_7O(CFCF_3CF_2O)_2CFCF_3CONH(CH_2)_3N~+(C_2H_5)_2 CH_3I~-, FC-4) is mixed with a triblock copolymer surfactant (EO_(20)PO_(70)EO_(20), Pluronic P123) to form a surfactant mixture and this mixture is used as the template, highly ordered mesoporous silica-based materials (JLU-20) with unusual hydrothermal stability are successfully synthesized at high temperatures (160-250°C).
机译:由于潜在应用的要求,介孔材料的水热稳定性是极大的兴趣。最近已经报道了许多具有良好水热稳定性的中孔材料的成功实例。值得注意的是,这些型腹腔结构在室温或相对低温(80-150℃)的温度下制备。这与用于许多微孔沸石或磷酸盐的合成的较高温度(150-250℃)完全不同,并且由于表面活性剂分子不能直接引起中孔结构的形成,因为在较高温度下的胶束形成的不利条件。与基于二氧化硅的材料一样,越来越多的kydroothotmal稳定性的关键因素是在孔壁上具有更多的二氧化硅缩合,但是低合成温度导致具有大量末端羟基的不完全冷凝的介孔壁,使得腹腔结构不稳定。可以预期通过增加结晶温度来提高二氧化硅冷凝水平。氟碳表面活性剂是一种稳定的表面活性剂,其在高温下广泛使用(> 200℃)。然而,由于它们的刚性和氟碳链的强疏水性,氟碳表面活性剂不适合制备有序有序的介孔的麻风合作液。在此证明,当氟碳表面活性剂(C_3F_7O(CFCF_3CF_2O)_2CFCF_3CONH(CH_2)_3N〜+(C_2H_5)_2CH_3I〜 - ,FC-4)与三嵌段共聚物表面活性剂(EO_(20)PO_(70)EO_( 20),Pluronic P123)以形成表面活性剂混合物,该混合物用作模板,在高温(160-250℃)的高温下成功合成高度有序的介孔二氧化硅基材料(JLU-20)。

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