首页> 外文期刊>Journal of the American Chemical Society >Biocatalytic synthesis of a nanostructured and crystalline bimetallic perovskite-like barium oxofluorotitanate at low temperature - art. no. JA063107G
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Biocatalytic synthesis of a nanostructured and crystalline bimetallic perovskite-like barium oxofluorotitanate at low temperature - art. no. JA063107G

机译:纳米结构的结晶双金属钙钛矿状氧代氟钛酸钡的低温生物催化合成-艺术没有。 JA063107G

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摘要

Silicatein, an enzymatic biocatalyst from the marine sponge Tethya aurantia, is demonstrated to catalyze and template the hydrolysis/condensation of the molecular precursor BaTiF6 at low temperature to form nanocrystalline BaTiOF4, an orthorhombic oxofluorotitanate. The kinetics of hydrolysis and growth were studied in-situ via pH profiling and quartz crystal microbalance (QCM) techniques. The composition and structure of the resulting BaTiOF4 microstructures on the silicatein surface were characterized using FT-IR spectroscopy, X-ray photoelectron spectroscopy, energy-dispersive X-ray spectroscopy, scanning electron microscopy, transmission electron microscopy, and selected area electron diffraction. The silicatein-mediated hydrolysis/condensation of BaTiF6 generates nanocrystalline BaTiOF4 (a high temperature intermediate to BaTiO3) at 16 degrees C without any added acid or base, and the growth is templated along the protein filaments into floret microstructures. The unique combination of silicatein and the single-source molecular precursor has allowed a multimetallic perovskite-like material to be biocatalytically synthesized, in vitro, for the first time.
机译:Silicatein是一种来自海洋海绵Tethya aurantia的酶促生物催化剂,经证明可催化和模板化分子前体BaTiF6在低温下的水解/缩合反应,从而形成纳米晶BaTiOF4(正交氟氧钛酸酯)。通过pH分析和石英晶体微量天平(QCM)技术就地研究了水解和生长的动力学。使用FT-IR光谱,X射线光电子能谱,能量色散X射线能谱,扫描电子显微镜,透射电子显微镜和选定区域电子衍射来表征在硅酸盐表面上生成的BaTiOF4微观结构的组成和结构。硅酸根介导的BaTiF6水解/缩合反应在16摄氏度下生成纳米晶体BaTiOF4(BaTiO3的高温中间产物)而无需添加任何酸或碱,并且沿着蛋白质丝状结构模板化生长成小花的微结构。硅酸盐和唯一来源的分子前体的独特结合使多金属钙钛矿样材料首次在体外生物催化合成。

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