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Dynamic analysis of preferential orientation of aragonite crystals in nacre from mollusk shell

机译:软体动物壳珍珠质中文石晶体优先取向的动力学分析

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摘要

Based on the scanning electron microscope (SEM) observations, it is confirmed that the nacre is composed of aragonite crystals and organic matrix with interlaced arrangement, showing ordered "brick-mortar" structure. The dynamic analysis of preferential orientation of aragonite crystals in the nacre from the abalone (Haliotis diverscolor supertexta) with different shell ages is systematically investigated using X-ray diffraction (XRD) and high resolution transmission electron microscope (HRTEM). Experiments reveal that, in the nacre from the juvenile mollusk shell, there exist three kinds of orientations of aragonite crystals: (113), (002) and (012). However, along with the growing of the mollusk shell, the intensity of (012) and (113) becomes weak,and the (002) becomes the preferred crystal orientation of aragonite in the nacre from the adult mollusk shell, which means that the c axis of aragonite crystals is perpendicular to the nacreous layers. The results obtained show that the nacre possessesa highly ordered structure at the micrometeranometer multiscale levels.
机译:根据扫描电子显微镜(SEM)的观察结果,可以确定珍珠母是由文石晶体和有机基质交错排列组成的,显示出有序的“砖-砂浆”结构。利用X射线衍射(XRD)和高分辨率透射电子显微镜(HRTEM),系统地研究了不同壳龄鲍鱼珍珠质中文石晶体优先取向的动力学分析。实验表明,在幼软体动物壳的珍珠质中,文石晶体存在三种取向:(113),(002)和(012)。然而,随着软体动物壳的生长,(012)和(113)的强度变弱,(002)成为成年软体动物壳中珍珠质中文石的优选晶体取向,这意味着c文石晶体的轴垂直于珠光层。获得的结果表明,珍珠母在微米/纳米多尺度水平上具有高度有序的结构。

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