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多肽模板法合成六方二氧化硅片晶

Polypeptide-templated synthesis of hexagonal silica platelets.

作者信息

Tomczak Melanie M, Glawe Diana D, Drummy Lawrence F, Lawrence Charles G, Stone Morley O, Perry Carole C, Pochan Darrin J, Deming Timothy J, Naik Rajesh R

机构信息

Materials and Manufacturing Directorate, Air Force Research Laboratory, Dayton, Ohio 45433, USA.

出版信息

J Am Chem Soc. 2005 Sep 14;127(36):12577-82. doi: 10.1021/ja0524503.

Abstract

Several studies have demonstrated the use of biomimetic approaches in the synthesis of a variety of inorganic materials. Poly-L-lysine (PLL) promotes the precipitation of silica from a silicic acid solution within minutes. The molecular weight of PLL was found to affect the morphology of the resulting silica precipitate. Larger-molecular weight PLL produced hexagonal silica platelets, whereas spherical silica particles were obtained using low-molecular weight PLL. Here we report on the polypeptide secondary-structure transition that occurs during the silicification reaction. The formation of the hexagonal silica platelets is attributed to the PLL helical chains that are formed in the presence of monosilicic acid and phosphate ions. Hexagonal PLL crystals can also serve as templates in directing the growth of the silica in a manner that generates a largely mesoporous silica phase that is oriented with respect to the protein crystal template.

摘要

多项研究已证明在多种无机材料的合成中使用仿生方法。聚-L-赖氨酸(PLL)能在数分钟内促进硅酸溶液中二氧化硅的沉淀。研究发现PLL的分子量会影响所得二氧化硅沉淀的形态。高分子量的PLL产生六边形二氧化硅片,而使用低分子量的PLL则得到球形二氧化硅颗粒。在此我们报告硅化反应过程中发生的多肽二级结构转变。六边形二氧化硅片的形成归因于在单硅酸和磷酸根离子存在下形成的PLL螺旋链。六边形PLL晶体也可作为模板,以一种生成相对于蛋白质晶体模板定向的大孔二氧化硅相的方式指导二氧化硅的生长。

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