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Unraveling the internal microstructure of biogenic and bioinspired calcite single crystals

机译:揭示生物成因和受生物启发的方解石单晶的内部微观结构

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摘要

Modern materials design is largely based on composite structures aimed at a synergistic integration of multiple components with a diverse range of properties. Biologically grown minerals provide an intriguing example of sophisticated organic-inorganic nanocomposite structures resulting in excellent mechanical characteristics. Among the mineral phases utilized by living organisms to generate hard tissues, calcium carbonate-especially the calcite polymorph-is ubiquitous and has been studied intensively. Biogenic calcite crystals often show hierarchical organization spanning multiple length scales, and the occluded organic phases are now known to be intimately associated with the mineral host. Here, we discuss the internal micro- and nanostructure of two selected types of calcite biominerals-the sea urchin spine and prismatic single crystals extracted from mollusk shells. This article highlights recent advances in translating the key principles of biological mineralization into design strategies for synthetic materials and presents analogies between biogenic and synthetic calcite single crystals.
机译:现代材料设计主要基于复合结构,旨在将具有多种特性的多个组件协同集成。生物生长的矿物为复杂的有机-无机纳米复合结构提供了一个有趣的例子,从而产生了出色的机械特性。在活生物体用来产生硬组织的矿物质相中,碳酸钙(尤其是方解石多晶型物)普遍存在,并且已经得到了深入的研究。生物成因方解石晶体通常表现出跨越多个长度尺度的等级组织,并且现在已知被闭塞的有机相与矿物主体紧密相关。在这里,我们讨论了两种方解石生物矿物(海胆脊柱和从软体动物壳中提取的棱柱形单晶)的内部微观结构和纳米结构。本文重点介绍了将生物矿化的关键原理转化为合成材料设计策略的最新进展,并提出了生物成因和合成方解石单晶之间的类比。

著录项

  • 来源
    《MRS bulletin》 |2015年第6期|499-508|共10页
  • 作者

    Schenk Anna S.; Kim Yi-Yeoun;

  • 作者单位

    Univ Stuttgart, Inst Polymer Chem, Stuttgart, Germany;

    Univ Leeds, Sch Chem, Leeds LS2 9JT, W Yorkshire, England;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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