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Developing new strategies for the preparation of micro- and nano-structured polymer materials.

机译:为制备微米和纳米结构的聚合物材料开发新的策略。

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摘要

This thesis described the development of new strategies for the preparation of micro- and nano-structured polymer materials. In particular, this thesis focused on: (i) the synthesis of polymer particles in microreactors, and (ii) the self-assembly of inorganic nanorods.;Second, we described the self-assembly of inorganic nanorods by using a striking analogy between amphiphilic ABA triblock copolymers and the hydrophilic nanorods tethered with hydrophobic polystyrene chains at both ends. We organized metal nanorods in structures with various geometries such as nanorings, nanochains, bundles, bundled nanochains, and nanospheres by tuning solely the quality of solvents. The self-assembly was tunable and reversible. This approach paved the way for the organization of anisotropic nanoparticles by using the strategies that are well-established for the self-assembly of block copolymers. We further described a systematic study of the self-assembly of polymer-tethered gold nanorods as a function of solvent composition in the system and the molecular weight of the polystyrene blocks. We found that the structure of the polymer pom-poms played an important role on the organization of polymer-tethered gold NRs. The 'supramolecular' assembly was governed by the competition between the end-to-end and side-by-side association of NRs and resulted in the controlled variation of the plasmonic properties of NRs, reflected in a 3-D plasmonic graph.;Key words. microfluidics, microreactors, polymer particles, core-shell, microcapsules, Janus particles, three-phasic particles, self-assembly, gold nanorods, block copolymers, plasmonic band.;First, this thesis presented the synthesis of polymer particles and capsules with pre-determined sizes and narrow size distributions (CV2%) in continuous microfluidic reactors. The method includes (i) the emulsification of monomers in a microfluidic flow-focusing device and (ii) in-situ solidification of droplets via photopolymerization. This microfluidic synthesis provides a novel strategy for the control over the shapes, compositions, and morphologies of polymer particles. In particular, we demonstrated the control over particle shapes by producing polymer ellipsoids, disks, rods, hemispheres, plates, and bowls. We produced polymer particles loaded with dyes, liquid crystals, quantum dots, and magnetic nanoparticles. We generated core-shell particles, microcapsules, Janus and three-phasic polymer particles. Control over the number of cores per droplet was achieved by manipulating the flow rates of liquids in the microchannels. We further investigated the hydrodynamic mechanism underlying the emulsification of droplets, which helps in guiding scientists and engineers to utilize this technique.
机译:本文描述了制备微结构和纳米结构聚合物材料的新策略的发展。具体而言,本论文着重于:(i)在微反应器中合成聚合物颗粒,和(ii)无机纳米棒的自组装。其次,我们通过使用两亲性之间的惊人类比描述了无机纳米棒的自组装。 ABA三嵌段共聚物和亲水纳米棒在两端均与疏水性聚苯乙烯链相连。我们通过仅调节溶剂的质量,将金属纳米棒组织成具有各种几何形状的结构,例如纳米环,纳米链,束,捆绑的纳米链和纳米球。自组装是可调的和可逆的。该方法通过使用为嵌段共聚物自组装建立的策略为各向异性纳米粒子的组织铺平了道路。我们进一步描述了聚合物束缚的金纳米棒的自组装与系统中溶剂组成和聚苯乙烯嵌段分子量的关系的系统研究。我们发现,聚合物绒球的结构在聚合物束缚金NR的组织中起着重要作用。 “超分子”组装受NRs端对端和并排缔合之间竞争的支配,并导致NRs的等离子特性的受控变化,反映在3-D等离子体图上。话。微流体,微反应器,聚合物颗粒,核-壳,微胶囊,Janus颗粒,三相颗粒,自组装,金纳米棒,嵌段共聚物,等离激元带。连续微流体反应器中确定的尺寸和窄尺寸分布(CV <2%)。该方法包括(i)在微流体流聚焦装置中乳化单体和(ii)通过光聚合原位固化液滴。这种微流体合成为控制聚合物颗粒的形状,组成和形态提供了一种新颖的策略。特别是,我们展示了通过生产聚合物椭球体,圆盘,棒,半球,板和碗来控制颗粒形状。我们生产了装载有染料,液晶,量子点和磁性纳米粒子的聚合物粒子。我们生成了核-壳颗粒,微胶囊,Janus和三相聚合物颗粒。通过控制微通道中液体的流速,可以控制每个液滴的芯数。我们进一步研究了液滴乳化的水动力机制,这有助于指导科学家和工程师利用该技术。

著录项

  • 作者

    Nie, Zhihong.;

  • 作者单位

    University of Toronto (Canada).;

  • 授予单位 University of Toronto (Canada).;
  • 学科 Chemistry Polymer.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 210 p.
  • 总页数 210
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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