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Single molecule study on the conformation, orientation and diffusion anisotropy of conjugated polymer chains in a liquid crystal matrix.

机译:单分子研究共轭聚合物链在液晶基质中的构象,取向和扩散各向异性。

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摘要

The nature of the solvent plays an important role in the conformation and orientation of polymers in solution. A particularly interesting case is when the solvent itself possesses order, such as when dissolving the polymer in a LC. In this dissertation, the morphology and diffusion behavior of the conjugated, stiff polymer MEH-PPV, (poly[2-methoxy-5((2-ethylhexyl)oxy)-1,4-phenylenevinylene]), in liquid crystal (LC) solvents have been investigated. Using polarization sensitive fluorescence correlation spectroscopy, it was found that in a nematic LC the polymer molecules are extended and highly aligned parallel with the nematic director. The conformation and orientational order of MEH-PPV increase with chain stiffness as a result of an interplay among the conformational entropy, solvation anisotropy, and bending energy of the polymer chains. In the smectic phase, about 10% of the MEH-PPV molecules are aligned perpendicular to the director in between the smectice layers, an effect not previously observed for a polymer solute. When applying an external electric field across the LC cell, the LC director changes orientation from a planar to a homeotropic alignment. The MEH-PPV chains remain aligned parallel with the LC director with applied field in the bulk of the LC device. However, the local structure near the LC-substrate interface is more complex. Single molecule polarization distributions measured as a function of distance from the LC device interface allow us to use MEH-PPV as sensitive local probe to explore complex structures in anisotropic media. Furthermore, diffusion anisotropy of the polymer solute in a LC solvent was studied by a novel two-beam cross-correlation technique. The diffusion anisotropy was observed to be about 2. This value is comparable to the diffusion anisotropy of the solvent and suggests that, despite the high degree of alignment, the solute diffusion is governed by the solvent and not the solute.
机译:溶剂的性质在溶液中聚合物的构象和取向中起重要作用。一个特别有趣的情况是溶剂本身具有有序性,例如将聚合物溶解在LC中。本文研究了共轭硬质聚合物MEH-PPV(聚[2-甲氧基-5(((2-乙基己基)氧基)-1,4-亚苯基亚乙烯基])的形态和扩散行为。已经研究了溶剂。使用偏振敏感的荧光相关光谱法,发现在向列型液相色谱中,聚合物分子被延伸并高度平行于向列型指向矢排列。由于聚合物链的构象熵,溶剂化各向异性和弯曲能之间的相互作用,MEH-PPV的构象和取向顺序随链刚度的增加而增加。在近晶相中,约有10%的MEH-PPV分子垂直于近晶层之间的指向矢排列,这在聚合物溶质中是前所未有的。当在LC单元上施加外部电场时,LC指向矢将方向从平面方向更改为垂直排列。 MEH-PPV链与LC导向器保持平行排列,并在大部分LC设备中施加了磁场。但是,LC-底物界面附近的局部结构更为复杂。根据距LC设备界面的距离而测得的单分子极化分布,使我们能够使用MEH-PPV作为敏感的局部探针来探索各向异性介质中的复杂结构。此外,通过一种新颖的两束互相关技术研究了聚合物溶质在LC溶剂中的扩散各向异性。观察到扩散各向异性约为2。该值与溶剂的扩散各向异性相当,这表明尽管取向度很高,但溶质扩散是由溶剂而不是溶质控制的。

著录项

  • 作者

    Chang, Wei-Shun.;

  • 作者单位

    The University of Texas at Austin.$bChemistry and Biochemistry.;

  • 授予单位 The University of Texas at Austin.$bChemistry and Biochemistry.;
  • 学科 Chemistry Physical.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 133 p.
  • 总页数 133
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学;
  • 关键词

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