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Fabrication, dynamics and self-assembly of anisotropic colloidal particles

机译:各向异性胶体颗粒的制造,动力学和自组装

摘要

The self-assembly of colloidal particles into larger structures is of interest both scientifically and technologically. The range of possible structures that may be formed by isotropically-interacting spherical particles is narrow, encompassing only a few possibilities. To overcome this limitation, one can introduce one or more forms of anisotropy to the particles to guide their self-assembly.In this work, we study the fabrication and behavior of polymeric microparticles that are chemically- and shape-anisotropic. Single-component, rod-shaped particles are fabricated by stop-flow lithography (SFL) using either hydrophobic and hydrophilic materials. SFL is also used to fabricateJanus particles that incorporate both chemistries within a single particle. The dynamical behavior and self-assembly of these rods are investigated using fluorescence and confocal microscopy over a rangeof different aspect ratios and environmental conditions. We also developed image processing algorithms to enable the quantitative analysis of these data, adapting standard particle identification and tracking techniques to the analysis of rod-shaped colloids.Finally, we demonstrated the fabrication of colloidal particles with branched and more complex morphologies, and briefly studied the self-assembly of these "patchy" particles.
机译:胶体颗粒自组装成较大的结构在科学和技术上都受到关注。通过各向同性地相互作用的球形颗粒形成的可能结构的范围很窄,仅包含了少数可能性。为了克服这一局限性,可以向粒子引入一种或多种形式的各向异性以指导其自组装。在这项工作中,我们研究了化学和形状各向异性的聚合物微粒的制备和行为。单组分棒状颗粒是使用疏水性和亲水性材料通过停流光刻(SFL)制成的。 SFL还用于制造将两种化学成分结合到一个颗粒中的Janus颗粒。使用荧光和共聚焦显微镜在不同纵横比和环境条件下研究了这些棒的动力学行为和自组装。我们还开发了图像处理算法以实现对这些数据的定量分析,使标准的颗粒识别和跟踪技术适用于杆状胶体的分析。最后,我们演示了具有分支和更复杂形态的胶体颗粒的制备方法,并进行了简要研究这些“斑点”粒子的自组装。

著录项

  • 作者

    Deconinck Adam J.;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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