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Micromolding of Calcium Carbonate Using a Bio-Inspired, Coacervation-Mediated Process

机译:使用生物启发,凝聚介导的工艺对碳酸钙进行微成型

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摘要

Based on a novel approach that takes into account the coacer-vation of calcium and poly(acrylic acid) (PAA), we were able to biomimetically produce molded micropatterned parts from amorphous calcium carbonate (ACC) particles. We studied the time- and concentration-dependent growth of Ca~(2+)/PAA coac-ervate droplets using dynamic light scattering (DLS) and turbidity measurements. Applying these results for the generation of high amounts of unstable ACC particles, we were able to produce slurries that could be molded into micropatterned casts. The obtained slurries contained both micrometer sized ACC particles and smaller nano-sized particles. When both types of particles were used for molding, materials with a high surface roughness could be produced, while the micropatterns of the molds could not be reproduced properly. However, by removing the bigger particles from the slurry using only the smaller, unstable, ACC particles, good reproduction of the micropatterns could be achieved, yielding smooth surfaces with a high surface area. The processing route represents a versatile platform for the bottom-up preparation of micropatterned ceramics on the basis of calcium carbonate.
机译:基于一种考虑到钙和聚丙烯酸(PAA)协同作用的新颖方法,我们能够仿生地从无定形碳酸钙(ACC)颗粒生产模制的微图案零件。我们使用动态光散射(DLS)和浊度测量研究了Ca〜(2 +)/ PAA缓蚀液滴的时间和浓度依赖性生长。将这些结果用于生成大量不稳定的ACC颗粒,我们就能生产出可以模制成微图案铸件的浆料。所得的浆料包含微米级的ACC颗粒和较小的纳米级颗粒。当两种类型的颗粒都用于模制时,可以生产具有高表面粗糙度的材料,而不能正确地复制模具的微图案。但是,通过仅使用较小的,不稳定的ACC颗粒从浆液中除去较大的颗粒,可以实现微图案的良好复制,从而产生具有高表面积的光滑表面。该加工路线代表了一种基于碳酸钙的自底向上制备微图案陶瓷的通用平台。

著录项

  • 来源
    《Journal of the American Ceramic Society》 |2013年第3期|736-742|共7页
  • 作者单位

    Advanced Ceramics, University of Bremen, Am Biologischen Garten 2, 28359 Bremen, Germany;

    Advanced Ceramics, University of Bremen, Am Biologischen Garten 2, 28359 Bremen, Germany;

    Advanced Ceramics, University of Bremen, Am Biologischen Garten 2, 28359 Bremen, Germany;

    Advanced Ceramics, University of Bremen, Am Biologischen Garten 2, 28359 Bremen, Germany;

    Advanced Ceramics, University of Bremen, Am Biologischen Garten 2, 28359 Bremen, Germany;

    Advanced Ceramics, University of Bremen, Am Biologischen Garten 2, 28359 Bremen, Germany;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
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