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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Aerosol-Assisted Controlled Packing of Silica Nanocolloids: Templateless Synthesis of Mesoporous Silicates with Structural Tunability and Complexity
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Aerosol-Assisted Controlled Packing of Silica Nanocolloids: Templateless Synthesis of Mesoporous Silicates with Structural Tunability and Complexity

机译:气溶胶辅助控制的二氧化硅纳米胶体填料:具有结构可调性和复杂性的中孔硅酸盐的无模板合成

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摘要

A template-free synthesis method for mesoporous and macro-/mesoporous hierarchically porous silicates with remarkable structural tunability and complexity is presented. SiO2 nanocolloids having diameters of 3.0-29 nm were prepared as a primary building block by using extended Stober synthesis, and they were subsequently assembled by an aerosol-assisted drying. The silica pore structure can be rationally controlled depending on the initial diameter of SiO2 colloids and the aerosol-assembly temperature that determines the packing density of SiO2 colloids (i.e., amounts of packing defects) in the resultant materials. The present method could produce mesoporous silica spheres with remarkable pore-structural tunability (291 < BET surface area <807 m(2) g(-1), 0.42 < pore volume <0.92 cm(3) g(-1), 3.1 < pore size <26 nm). Hierarchically porous materials can also be synthesized by the evaporation-induced phase separation of solvent medium during the aerosol-assisted assembly of SiO2 colloids. By adding aluminum and Pt precursors into the SiO2 colloid suspensions before the aerosol-assisted assembly, mesoporous aluminosilicates supporting uniform Pt nanoclusters (similar to 2 nm) can also be synthesized. This indicates that the synthesis strategy can be used for the direct synthesis of functional silicate materials.
机译:提出了一种无模板的合成方法,该方法具有显着的结构可调性和复杂性,用于介孔和大/介孔分级多孔硅酸盐。通过使用扩展的斯托伯合成法,制备了直径为3.0-29 nm的SiO2纳米胶体作为主要组成部分,随后通过气溶胶辅助干燥进行组装。可以根据SiO 2胶体的初始直径和决定所得材料中SiO 2胶体的堆积密度(即堆积缺陷的量)的气溶胶组装温度来合理地控制二氧化硅的孔结构。本方法可以生产具有显着的孔结构可调性的介孔二氧化硅球(291

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