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Mussel-Directed Synthesis of Nitrogen-Doped Anatase TiO2

机译:贻贝定向合成氮掺杂的锐钛矿型TiO2

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摘要

Structure-forming processes leading to biominerals are well worth learning in pursuit of new synthetic techniques. Strategies that attempt to mimic nature invitro cannot replace an entire complex natural organism, requiring ingenuity beyond chemists hands. A bioprocess-inspired synthesis is demonstrated for fabrication of N-doped TiO2 materials at ambient temperature by direct implantation of precursor into living mussels. The amorphous precursor transforms into N-doped anatase TiO2 with a hierarchical nanostructure. Synthetic TiO2 exhibits high phase stability and enhanced visible-light photocatalytic activity as a result of modifications to its band gap during invivo mineralization. Intracellular proteins were found to be involved in TiO2 mineralization. Our findings may inspire material production by new synthetic techniques, especially under environmentally benign conditions.
机译:追求生物合成技术的结构形成过程非常值得学习。试图模仿自然界的策略无法取代整个复杂的自然有机体,这需要化学家之外的独创性。通过将生物前体直接植入活体贻贝中,可以证明在环境温度下制备N掺杂的TiO2材料的过程受到生物工艺的启发。非晶态前体转变为具有分层纳米结构的N掺杂锐钛矿TiO2。由于在体内矿化过程中对其带隙的修饰,合成的TiO2具有较高的相稳定性和增强的可见光光催化活性。发现细胞内蛋白质与TiO2矿化有关。我们的发现可能会启发通过新的合成技术生产材料,特别是在环境友好的条件下。

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