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Magnetochromatic Microspheres: Rotating Photonic Crystals

机译:磁致变色微球:旋转光子晶体

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摘要

Magnetochromatic microspheres have been fabricated through instant assembly of superpara-magnetic (SPM) colloidal particles inside emulsion droplets of UV curable resin followed by an immediate UV curing process to polymerize the droplets and fix the ordered structures. When dispersed in the liquid droplets, superparamagnetic Fe_3O_4@SiO_2 core/shell particles self-organize under the balanced interaction of repulsive and attractive forces to form one-dimensional chains, each of which contains periodically arranged particles diffracting visible light and displaying field-tunable colors. UV initiated polymerization of the oligomers of the resin fixes the periodic structures inside the droplet microspheres and retains the diffraction property. Because the superparamagnetic chains tend to align themselves along the field direction, it is very convenient to control the orientation of such photonic microspheres and, accordingly, their diffractive colors, by changing the orientation of the crystal lattice relative to the incident light using magnetic fields. The excellent stability together with the capability of fast on/off switching of the diffraction by magnetic fields makes the system suitable for applications such as color display, rewritable signage, and sensors. As a simple demonstration, we have fabricated a display unit that has on/off bistable states by embedding the magnetochromatic microspheres in a matrix that can thermally switch between solid and liquid phases.
机译:通过将超顺磁性(SPM)胶体颗粒即时组装在UV固化树脂的乳剂小滴中,然后立即进行UV固化工艺以使小滴聚合并固定有序结构,来制造磁致变色微球。当分散在液滴中时,超顺磁性Fe_3O_4 @ SiO_2核/壳粒子在排斥力和吸引力的平衡相互作用下自组织形成一维链,每个维链均包含周期性排列的粒子,这些粒子衍射可见光并显示场可调颜色。 。树脂的低聚物的紫外线引发的聚合固定了液滴微球内部的周期性结构,并保留了衍射特性。由于超顺磁性链倾向于沿磁场方向排列,因此非常方便,可以通过使用磁场改变晶格相对于入射光的方向来控制此类光子微球的方向以及相应地控制其衍射色。出色的稳定性以及通过磁场快速切换开/关衍射的能力,使该系统适用于彩色显示,可重写标牌和传感器等应用。作为一个简单的演示,我们通过将磁致变色微球嵌入可以在固相和液相之间热切换的矩阵中,制造了一种具有开/关双稳态状态的显示单元。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2009年第43期|15687-15694|共8页
  • 作者单位

    Department of Chemistry, University of California, Riverside, California 92521;

    School of Electrical Engineering and Computer Science, Seoul National University, San 56-1, Shillim 9-dong, Gwanak-ku, Seoul 151- 744, South Korea;

    Department of Chemistry, University of California, Riverside, California 92521;

    School of Electrical Engineering and Computer Science, Seoul National University, San 56-1, Shillim 9-dong, Gwanak-ku, Seoul 151- 744, South Korea;

    Department of Chemistry, University of California, Riverside, California 92521;

    School of Electrical Engineering and Computer Science, Seoul National University, San 56-1, Shillim 9-dong, Gwanak-ku, Seoul 151- 744, South Korea;

    Department of Chemistry, University of California, Riverside, California 92521;

    School of Electrical Engineering and Computer Science, Seoul National University, San 56-1, Shillim 9-dong, Gwanak-ku, Seoul 151- 744, South Korea;

    Department of Chemistry, University of California, Riverside, California 92521;

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  • 正文语种 eng
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  • 入库时间 2022-08-18 03:17:26

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