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Mesoporous silicas by self-assembly of lipid molecules: Ribbon, hollow sphere, and chiral materials

机译:通过脂质分子自组装的中孔二氧化硅:带状,空心球和手性材料

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摘要

Using lipids (N-acyl amino acids) and 3-aminopropyltriethoxysilane as structure- and co-structure-directing agents, mesoporous silicas with four different morphologies, that is, helical ribbon (HR), hollow sphere, circular disk, and helical hexagonal rod, were synthesized just by changing the synthesis temperature from 0 degrees C to 10, 15, or 20 degrees C. The structures were studied by electron microscopy. It was found that 1) the structures have double-layer disordered mesopores in the HR, radially oriented mesopores in the hollow sphere, and highly ordered straight and chiral 2D-hexagonal mesopores in the disklike structure and helical rod, respectively; 2) these four types of mesoporous silica were transformed from the flat bilayered lipid ribbon with a chain-interdigitated layer phase through a solid-solid transformation for HR formation and a dissolving procedure transformation for the synthesis of the hollow sphere, circular disk, and twisted morphologies; 3) the mesoporous silica helical ribbon was exclusively right-handed and the 2D-hexagonal chiral mesoporous silica was excessively left-handed when the L-form N-acyl amino acid was used as the lipid template; 4)the HR was formed only by the chiral lipid molecules, whereas the 2D-hexagonal chiral mesoporous silicas were formed by chiral, achiral, and racemic lipids. Our findings give important information for the understanding of the formation of chiral materials at the molecular level and will facilitate a more efficient and systematic approach to the generation of rationalized chiral libraries.
机译:使用脂质(N-酰基氨基酸)和3-氨基丙基三乙氧基硅烷作为结构和共结构导向剂,具有四种不同形态的中孔二氧化硅,即螺旋带(HR),空心球,圆盘和螺旋六角棒仅通过将合成温度从0℃改变为10、15或20℃即可合成α,β。通过电子显微镜研究结构。发现:1)结构在HR中具有双层无序中孔,在空心球体中具有径向取向的中孔,并且在盘状结构和螺旋棒中分别具有高度有序的直链和手性2D-六角形中孔; 2)将这四种类型的中孔二氧化硅从具有链状指状层相的扁平双层脂质带中通过固-固转化进行HR形成,并通过溶解步骤进行转化以合成中空球,圆盘和扭曲形态3)当将L-型N-酰基氨基酸用作脂质模板时,介孔二氧化硅螺旋带仅是右旋的,而2D-六方手性介孔二氧化硅则是过量的左旋的; 4)HR仅由手性脂质分子形成,而2D-六方手性介孔二氧化硅由手性,非手性和外消旋脂质形成。我们的发现为在分子水平上了解手性材料的形成提供了重要的信息,并将有助于更有效和系统地生成合理的手性文库。

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