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首页> 外文期刊>Journal of the American Chemical Society >Forming Anisotropic Crystal Composites: Assessing the Mechanical Translation of Gel Network Anisotropy to Calcite Crystal Form
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Forming Anisotropic Crystal Composites: Assessing the Mechanical Translation of Gel Network Anisotropy to Calcite Crystal Form

机译:形成各向异性晶体复合材料:评估凝胶网络各向异性到方解石晶体形式的机械翻译

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摘要

The promise of crystal composites with direction-specific properties is an attractive prospect for diverse applications; however, synthetic strategies for realizing such composites remain elusive. Here, we demonstrate that anisotropic agarose gel networks can mechanically "mold" calcite crystal growth, yielding anisotropically structured, single-crystal composites. Drying and rehydration of agarose gel films result in the affine deformation of their fibrous networks to yield fiber alignment parallel to the drying plane. Precipitation of calcium carbonate within these anisotropic networks results in the formation of calcite crystal composite disks oriented parallel to the fibers. The morphology of the disks, revealed by nanocomputed tomography imaging, evolves with time and can be described by linear-elastic fracture mechanics theory, which depends on the ratio between the length of the crystal and the elastoadhesive length of the gel. Precipitation of calcite in uniaxially deformed agarose gel cylinders results in the formation of rice-grain-shaped crystals, suggesting the broad applicability of the approach. These results demonstrate how the anisotropy of compliant networks can translate into the desired crystal composite morphologies. This work highlights the important role organic matrices can play in mechanically "molding" biominerals and provides an exciting platform for fabricating crystal composites with direction-specific and emergent functional properties.
机译:具有方向特定性质的晶体复合材料的承诺是各种应用的有吸引力的前景;然而,实现这种复合材料的合成策略仍然难以捉摸。这里,我们证明各向异性琼脂糖凝胶网络可以机械地“模塑”方解石晶体生长,产生各向异性结构的单晶复合材料。琼脂糖凝胶膜的干燥和补液导致其纤维网络的仿射变形,以产生平行于干燥平面的纤维对准。在这些各向异性网络中碳酸钙的沉淀导致形成与纤维平行的方解石晶体复合盘的形成。纳米仿层析成像显示的盘的形态,随时间演变,可以通过线性弹性断裂力学理论描述,这取决于晶体长度与凝胶的弹性造成长度之间的比率。在单轴变形的琼脂糖凝胶缸中,方解石的沉淀导致稻米形晶体的形成,表明该方法的广泛适用性。这些结果表明了柔顺网络的各向异性如何转化为所需的晶体复合形态。这项工作突出了重要作用,有机基质可以在机械“模塑”生物体中可以在机械上发挥作用,并提供用于制造具有方向特异性和紧急功能性的晶体复合材料的励磁平台。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2021年第9期|3439-3447|共9页
  • 作者单位

    Department of Materials Science and Engineering Cornell University Ithaca New York 14853 United States Materials & Environment section Department 3MD Faculty of Civil and Engineering and Geosciences Delft University of Technology 2628 CN Delft The Netherlands;

    Laboratory of Soft and Living Materials Department of Materials ETH Zurich 8093 Zurich Switzerland;

    Department of Biotechnology Faculty of Applied Sciences Delft University of Technology 2629 HZ Delft The Netherlands;

    Department of Materials Science and Engineering Cornell University Ithaca New York 148S3 United States;

    Cornell Center for Materials Research Cornell University Ithaca New York 14853 United States;

    Materials & Environment section Department 3MD Faculty of Civil and Engineering and Geosciences Delft University of Technology 2628 CN Delft The Netherlands;

    Laboratory of Soft and Living Materials Department of Materials ETH Zurich 8093 Zurich Switzerland;

    Department of Materials Science and Engineering Cornell University Ithaca New York 14853 United States Kavli Institute at Cornell for Nanoscale Science Ithaca New York 148S3 United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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