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Empirically testing vaterite structural models using neutron diffraction and thermal analysis

机译:使用中子衍射和热分析对球ate石结构模型进行经验测试

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摘要

Otoliths, calcium carbonate (CaCO3) ear bones, are among the most commonly used age and growth structures of fishes. Most fish otoliths are comprised of the most dense CaCO3 polymorph, aragonite. Sturgeon otoliths, in contrast, have been characterized as the rare and structurally enigmatic polymorph, vaterite—a metastable polymorph of CaCO3. Vaterite is an important material ranging from biomedical to personal care applications although its crystal structure is highly debated. We characterized the structure of Lake Sturgeon otoliths using thermal analysis and neutron powder diffraction, which is used non-destructively. We confirmed that while Lake Sturgeon otoliths are primarily composed of vaterite, they also contain the denser CaCO3 polymorph, calcite. For the vaterite fraction, neutron diffraction data provide enhanced discrimination of the carbonate group compared to x-ray diffraction data, owing to the different relative neutron scattering lengths, and thus offer the opportunity to uniquely test the more than one dozen crystal structural models that have been proposed for vaterite. Of those, space group P6522 model, a = 7.1443(4)Å, c = 25.350(4)Å, V = 1121.5(2)Å3 provides the best fit to the neutron powder diffraction data, and allows for a structure refinement using rigid carbonate groups.
机译:耳石,碳酸钙(CaCO3)耳骨,是鱼类最常用的年龄和生长结构。大多数鱼耳石由最稠密的CaCO3多晶型物文石组成。相比之下,鱼耳石则被表征为稀有且结构神秘的多晶形体,球ate石,CaCO3的亚稳多晶形。球ate石是一种重要的材料,从生物医学到个人护理应用,尽管其晶体结构备受争议。我们使用热分析和中子粉末衍射技术(无损使用)对lith鱼湖耳石的结构进行了表征。我们确认,虽然St鱼湖耳石主要由球ate石组成,但它们也包含较致密的CaCO3多晶型物,方解石。对于球ate石部分,由于相对中子的相对散射长度不同,与X射线衍射数据相比,中子衍射数据提供了对碳酸盐基团的增强区分,从而提供了独特的机会来测试十多个具有被提议用于球ate石。其中,空间群P6522模型的a = 7.1443(4)Å,c = 25.350(4)Å,V = 1121.5(2)Å 3 最适合中子粉末衍射数据,并允许使用硬质碳酸酯基团精制结构。

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