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Lessons from nature: Novel routes to biomimetic synthesis of silica based materials.

机译:大自然的教训:仿生合成二氧化硅基材料的新途径。

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In nature, biominerals are formed under the control of organic components such as proteins and polysaccharides at ambients pHs and temperatures. Yet up until recently, there has been little success in utilizing such constituents as templates for biomimetic silica synthesis. Our recent studies here at UCSB of the proteins occluded within silica needles of the sponge, Tethya aurantia, demonstrate that the proteins which we've named silicateins (silica proteins), have the capability of acting as catalysts for the hydrolysis of silicon alkoxides at physiological pH and temperature, while also serving as scaffolds to organize the resulting silica or silisequioxane products. It is well understood among silica chemists that silicon alkoxides normally must undergo acid or base hydrolysis prior to condensation to silicon dioxide and is therefore normally very stable of pH 7. The understanding of the mechanism of these silicateins arose from mutagenesis studies of the proteins and it was from these results that block copolypeptides were designed. These polymers could not only accelerate the polycondensation of silica from silicon alkoxides at neutral pH but also contained self assemblying features, either through hydrogen, ionic or covalent bonding. It was discovered that the utilization of these varying polypeptides allowed us to successfully synthesize ordered silica structures ranging from transparent silica spheres to bundles of lathelike silica structures at ambient temperature, pressure and pH.
机译:在自然界中,生物矿物质是在环境pH和温度下,在有机成分(例如蛋白质和多糖)的控制下形成的。然而直到最近,利用这种成分作为仿生二氧化硅合成的模板仍几乎没有成功。我们最近在UCSB上对海绵的硅胶针中的蛋白质 Tethya aurantia 进行的研究表明,我们将这些被命名为硅酸盐的蛋白质( silica pro 蛋白质),具有在生理pH和温度下水解烷氧基硅的催化剂的能力,同时还可以作为支架来组织所得的二氧化硅或硅倍半氧烷产品。二氧化硅化学家中众所周知,烷氧基硅通常在缩合为二氧化硅之前必须先经过酸或碱水解,因此通常在7的pH值下非常稳定。对这些硅酸酯的机理的理解来自蛋白质及其蛋白质的诱变研究。根据这些结果,设计了封闭共多肽。这些聚合物不仅可以在中性pH下促进二氧化硅从烷氧基硅的缩聚反应,而且还具有通过氢,离子或共价键结合的自组装特征。已发现利用这些变化的多肽使我们能够在环境温度,压力和pH下成功合成从透明二氧化硅球到车床状二氧化硅结构束的有序二氧化硅结构。

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