Structure-property relationships of a biological mesocrystal in the adult sea urchin spine.

نویسندگان

  • Jong Seto
  • Yurong Ma
  • Sean A Davis
  • Fiona Meldrum
  • Aurelien Gourrier
  • Yi-Yeoun Kim
  • Uwe Schilde
  • Michael Sztucki
  • Manfred Burghammer
  • Sergey Maltsev
  • Christian Jäger
  • Helmut Cölfen
چکیده

Structuring over many length scales is a design strategy widely used in Nature to create materials with unique functional properties. We here present a comprehensive analysis of an adult sea urchin spine, and in revealing a complex, hierarchical structure, show how Nature fabricates a material which diffracts as a single crystal of calcite and yet fractures as a glassy material. Each spine comprises a highly oriented array of Mg-calcite nanocrystals in which amorphous regions and macromolecules are embedded. It is postulated that this mesocrystalline structure forms via the crystallization of a dense array of amorphous calcium carbonate (ACC) precursor particles. A residual surface layer of ACC and/or macromolecules remains around the nanoparticle units which creates the mesocrystal structure and contributes to the conchoidal fracture behavior. Nature's demonstration of how crystallization of an amorphous precursor phase can create a crystalline material with remarkable properties therefore provides inspiration for a novel approach to the design and synthesis of synthetic composite materials.

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عنوان ژورنال:
  • Proceedings of the National Academy of Sciences of the United States of America

دوره 109 10  شماره 

صفحات  -

تاریخ انتشار 2012