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Biomineralization as an Inspiration for Materials Chemistry

机译:生物矿化作为材料化学的灵感来源

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摘要

Living organisms are well known for building a wide range of specially designed organic-inorganic hybrid materials such as bone, teeth, and shells, which are highly sophisticated in terms of their adaptation to function. This has inspired physicists, chemists, and materials scientists to mimic such structures and their properties. In this Review we describe how strategies used by nature to build and tune the properties of biominerals have been applied to the synthesis of materials for biomedical, industrial, and technological purposes. Bio-inspired approaches such as molecular templating, supramolecular templating, organized surfaces, and phage display as well as methods to replicate the structure and function of biominerals are discussed. We also show that the application of in situ techniques to study and visualize the bio-inspired materials is of paramount importance to understand, control, and optimize their preparation. Biominerals are synthesized in aqueous media under ambient conditions, and these approaches can lead to materials with a reduced ecological footprint than can traditional methods.
机译:众所周知,生物体以构建各种专门设计的有机-无机杂化材料(如骨骼、牙齿和贝壳)而闻名,这些材料在功能适应方面非常复杂。这激发了物理学家、化学家和材料科学家模仿这种结构及其特性。在这篇综述中,我们描述了自然界用来构建和调整生物矿物特性的策略如何应用于生物医学、工业和技术目的的材料合成。讨论了分子模板、超分子模板、有组织表面和噬菌体展示等仿生方法,以及复制生物矿物质结构和功能的方法。我们还表明,应用原位技术来研究和可视化仿生材料对于理解、控制和优化其制备至关重要。生物矿物质在环境条件下在水性介质中合成,与传统方法相比,这些方法可以减少材料的生态足迹。

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