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Biologically Formed Mesoporous Amorphous Silica

机译:生物形成的介孔非晶硅

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Mesoporous crystalline silica has attracted the attention of scientists due to its extraordinary functionalities. In particular, substantial progress has been made in the synthesis of mesoporous crystalline silica using biomimetic approaches under ambient conditions. However, the biomimetic synthesis of mesoporous amorphous silica has not been well studied so far. Here we show that amorphous silica can be synthesized in aqueous solution under ambient conditions via biological catalysis. The high purity amorphous silica is obtained as spicules (average diameter: 15.6 μm) that are cemented through junctions, thereby forming the skeleton of the freshwater sponge Cauxi. We discover that such amorphous spicules themselves contain mesopores. This opens a potential avenue to develop highly durable mesoporous membranes at room temperature. We also describe the macro- and microstructural features, the mechanism of biological precipitation, and the properties of the Cauxi skeleton.
机译:中孔结晶二氧化硅由于其非凡的功能性而吸引了科学家的注意。特别地,在环境条件下使用仿生方法在介孔晶体二氧化硅的合成中已取得实质性进展。然而,到目前为止,尚未很好地研究介孔无定形二氧化硅的仿生合成。在这里,我们表明无定形二氧化硅可以在环境条件下通过生物催化在水溶液中合成。获得高纯度无定形二氧化硅,其形式为针状(平均直径:15.6μm),它们通过接合处粘合在一起,从而形成了淡水海绵Cauxi的骨架。我们发现这样的无定形针本身含有中孔。这开辟了在室温下开发高度耐用的中孔膜的潜在途径。我们还描述了宏观和微观结构特征,生物沉淀的机理以及Cauxi骨架的特性。

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