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Biotemplated synthesis of hollow double-layered core/shell titania/silica nanotubes under ambient conditions

机译:环境条件下空心双层核/壳二氧化钛/二氧化硅纳米管的生物模板合成

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摘要

Bacterial flagella, protein nanotubes (~15 nm wide) detached from Salmonella typhimurium bacteria, are used to template the formation of titania/silica core/shell double-layered nanotubes in aqueous solution under ambient conditions through a sol-gel process. The thickness of each layer is tunable by varying the concentration of precursor solutions or reaction times. Upon heating, the flagella can be removed and the inner titania layer can be transformed into a nanocrystalline layer supported by the outer silica sheath. Nanotubes with different inner pore diameters and morphologies could be templated by other bionanofibers such as M13 phage and bacterial pili. This work shows that bionanofibers can be used as a universal biotemplate for the green synthesis of nanotubes with tunable wall thicknesses.
机译:细菌鞭毛是从鼠伤寒沙门氏菌中分离出的蛋白质纳米管(约15 nm宽),用于通过溶胶-凝胶法对水溶液中二氧化钛/二氧化硅核/壳双层纳米管的形成进行模板化。每层的厚度可以通过改变前体溶液的浓度或反应时间来调节。加热后,可以除去鞭毛,并且可以将内部二氧化钛层转变成由外部二氧化硅鞘支撑的纳米晶体层。具有不同内部孔径和形态的纳米管可以用其他生物纳米纤维(例如M13噬菌体和细菌菌毛)作为模板。这项工作表明,生物纳米纤维可用作壁厚可调的绿色纳米管绿色合成的通用生物模板。

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