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首页> 外文期刊>Biomacromolecules >Conformation and Assembly of Polypeptide Scaffolds in Templating the Synthesis of Silica:An Example of a Polylysine Macromolecular 'Switch'
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Conformation and Assembly of Polypeptide Scaffolds in Templating the Synthesis of Silica:An Example of a Polylysine Macromolecular 'Switch'

机译:模板模板在二氧化硅合成中的构象和组装:聚赖氨酸大分子“开关”的一个例子

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摘要

Although the role of polycationic macromolecules in catalyzing the synthesis of silica structures is well established,detailed understanding of the mechanisms behind the production of silica structures of controlled morphologies remains unclear.In this study,we have used both poly-L-lysine (PLL) and/or poly-D-lysine (PDL) for silica synthesis to investigate mechanisms controlling inorganic morphologies.The formation of both spherical silica particles and hexagonal plates was observed.The formation of hexagonal plates was suggested,via circular dichroic spectroscopy (CD),to result from the assembly of helical polylysine molecules.We confirm that the formation of PLL helices is a prerequisite to the hexagonal silica synthesis.In addition,we present for the first time that the handedness of the helicity of the macromolecule does not affect the formation of hexagonal silica.We also show,by using two different silica precursors,that the precursor does not have a direct effect on the formation of hexagonal silica plates.Furthermore,when polylysine helices were converted to beta-sheet structure,only silica particles were obtained,thus suggesting that the adoption of a helical conformation by PLL is required for the formation of hexagonally organized silica.These results demonstrate that the change in polylysine conformation can act as a "switch" in silica structure formation and suggest the potential for controlling morphologies and structures of inorganic materials via control of the conformation of soft macromolecular templates.
机译:尽管聚阳离子大分子在催化二氧化硅结构合成中的作用已得到很好的确立,但对形成受控形态的二氧化硅结构背后的机理的详细了解仍不清楚。在这项研究中,我们同时使用了聚-L-赖氨酸(PLL)和/或聚D-赖氨酸(PDL)用于二氧化硅合成,以研究控制无机形态的机理。观察到球形二氧化硅颗粒和六边形板的形成。通过圆二色光谱(CD)暗示了六边形板的形成,我们证实了PLL螺旋的形成是六边形二氧化硅合成的先决条件。此外,我们首次提出大分子螺旋的旋向性不会影响其形成。我们还显示,通过使用两种不同的二氧化硅前体,该前体对甲酰胺的形成没有直接影响。此外,当将聚赖氨酸螺旋转变成β-折叠结构时,仅获得二氧化硅颗粒,这表明形成六方组织的二氧化硅需要采用PLL的螺旋构象。这些结果表明:聚赖氨酸构象的变化可以充当二氧化硅结构形成的“开关”,并暗示通过控制软大分子模板构象来控制无机材料的形态和结构的潜力。

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