首页> 外文期刊>Bulletin of the Korean Chemical Society >Structural Transcription of Organogels to Mesoporous Silicas: A Chain-length Dependent Morphology and Pore Texture
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Structural Transcription of Organogels to Mesoporous Silicas: A Chain-length Dependent Morphology and Pore Texture

机译:有机凝胶到中孔二氧化硅的结构转录:链长依赖形态和孔纹理。

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Here, we report a chain-length dependent morphology and pore structure tailing of mesoporous silica templated from organogels, which is formed by primary alkylamine and ethylene glycol at room temperature. As the chain length of alkylamine changes from 12 to 18, the resulted materials exhibit a morphology change from layers to spheres and platelets, respectively. SEM and TEM observation revealed that these shapes appear to be inherited from their parent organogels. Further pore structure characterization by nitrogen sorption analysis demonstrates that all the resulted silicas exhibit typical IV isotherms indicative of uniform mesopores, and their pore sizes are dependent on the chain length of alkylamine used.
机译:在这里,我们报告了由有机凝胶模板化的介孔二氧化硅的链长依赖性形态和孔结构拖尾,有机凝胶是在室温下由伯烷基胺和乙二醇形成的。当烷基胺的链长从12变为18时,所得材料分别显示出从层到球和血小板的形态变化。 SEM和TEM观察表明,这些形状似乎是从其母体有机凝胶继承而来的。通过氮吸附分析对孔结构的进一步表征表明,所有所得的二氧化硅均显示出典型的IV等温线,表明均匀的中孔,并且它们的孔径取决于所用烷基胺的链长。

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