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方解石棱柱中的晶格倾斜。

Crystal lattice tilting in prismatic calcite.

机构信息

Department of Physics, University of Wisconsin-Madison, 1150 University Avenue, Madison, WI 53706, USA.

出版信息

J Struct Biol. 2013 Aug;183(2):180-90. doi: 10.1016/j.jsb.2013.06.006. Epub 2013 Jun 24.

Abstract

We analyzed the calcitic prismatic layers in Atrina rigida (Ar), Haliotis iris (Hi), Haliotis laevigata (HL), Haliotis rufescens (Hrf), Mytilus californianus (Mc), Pinctada fucata (Pf), Pinctada margaritifera (Pm) shells, and the aragonitic prismatic layer in the Nautilus pompilius (Np) shell. Dramatic structural differences were observed across species, with 100-μm wide single-crystalline prisms in Hi, HL and Hrf, 1-μm wide needle-shaped calcite prisms in Mc, 1-μm wide spherulitic aragonite prisms in Np, 20-μm wide single-crystalline calcite prisms in Ar, and 20-μm wide polycrystalline calcite prisms in Pf and Pm. The calcite prisms in Pf and Pm are subdivided into sub-prismatic domains of orientations, and within each of these domains the calcite crystal lattice tilts gradually over long distances, on the order of 100 μm, with an angle spread of crystal orientation of 10-20°. Furthermore, prisms in Pf and Pm are harder than in any other calcite prisms analyzed, their nanoparticles are smaller, and the angle spread is strongly correlated with hardness in all shells that form calcitic prismatic layers. One can hypothesize a causal relationship of these correlated parameters: greater angle spread may confer greater hardness and resistance to wear, thus providing Pf and Pm with a structural advantage in their environment. This is the first structure-property relationship thus far hypothesized in mollusk shell prisms.

摘要

我们分析了皱红滨螺(Ar)、紫口鲍(Hi)、白鲍(HL)、红鲍(Hrf)、加州贻贝(Mc)、马氏珠母贝(Pf)和企鹅珍珠贝(Pm)的方解石棱柱层和鹦鹉螺(Np)的文石棱柱层。我们观察到不同物种之间存在显著的结构差异,Hi、HL 和 Hrf 中存在 100μm 宽的单晶棱柱,Mc 中存在 1μm 宽的针状方解石棱柱,Np 中存在 1μm 宽的球晶文石棱柱,Ar 中存在 20μm 宽的单晶方解石棱柱,Pf 和 Pm 中存在 20μm 宽的多晶方解石棱柱。Pf 和 Pm 中的方解石棱柱被细分为由取向的亚棱柱域组成,在这些域内,方解石晶格逐渐倾斜,距离长达 100μm,晶体取向的角度分布为 10-20°。此外,Pf 和 Pm 中的棱柱比分析的任何其他方解石棱柱都更硬,它们的纳米颗粒更小,并且角度分布与所有形成方解石棱柱层的贝壳的硬度强烈相关。人们可以假设这些相关参数之间存在因果关系:更大的角度分布可能赋予更大的硬度和耐磨性,从而为 Pf 和 Pm 在其环境中提供结构优势。这是迄今为止在软体动物贝壳棱柱体中假设的第一个结构-性能关系。

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