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Functional Inorganic Materials with Complex Form: Construction, Self-assembly Principles and Property

机译:复杂形式的功能性无机材料:构造,自组装原理和性能

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摘要

There is a rich and long history of gaining inspiration from the nature for the design of practical materials and systems.Biominerals are well-known composites of inorganic and organic materials in the form of fascinating shapes and highly ordered structures existing in the natural world, such as pearl, oyster shells, corals, ivory, sea urchin spines, cuttlefish bone, limpet teeth, magnetic crystals in bacteria and human bones that are created by living organisms.During the past few decades, it has become one of the most influencing subjects in materials proteins, which involve in all the processes of multicell organisms, such as fertilization, differentiation, development, immunity, infection, and cancer.chemistry to explore new bio-inspired strategies for selfassembling or surface-assembling molecules or colloids to generate materials with controlled morphologies,
机译:从自然界中汲取灵感,已有很长的历史可以用来设计实用的材料和系统。生物矿物质是众所周知的无机和有机材料的复合物,其形式以引人入胜的形状和高度有序的结构形式存在于自然界中,例如如珍珠,牡蛎壳,珊瑚,象牙,海胆刺,墨鱼骨,帽贝齿,细菌和人体骨骼中由活生物体产生的磁性晶体。在过去的几十年中,它已成为人类中最具影响力的主题之一物质蛋白,涉及多细胞生物的所有过程,例如受精,分化,发育,免疫,感染和癌症。化学探索生物启发的新策略,以自组装或表面组装分子或胶体以产生受控的材料形态

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  • 来源
    《中国科学院院刊(英文版)》 |2011年第2期|135-137|共3页
  • 作者单位

    University of Science and Technology of China;

    University of Science and Technology of China;

    University of Science and Technology of China;

    University of Science and Technology of China;

    University of Science and Technology of China;

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