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Fabrication and characterization of amphiphilic pi-conjugated polymer films

机译:两亲性π共轭聚合物薄膜的制备与表征

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摘要

The fabrication and characterization of highly-ordered thin films made from an amphiphilic, regioregular (RR) polythiophene (PT) derivative are described. The effects of structural conformation and order on materials properties and reactivity are discussed. High optical quality films of poly(3-(11-(2-tetrahydropyranyloxy)undecyl)thiophene) (PTHPUDT) were prepared by the Langmuir-Blodgett (LB) technique. The amphiphilic nature of the polymer affords layer-by-layer deposition and the formation of multilayer films of head-to-head and tail-to-tail, Y-type structure. X-ray diffraction (XRD) studies indicate the formation of a semi-crystalline film with bilayer separations of ~30 Å. Anisotropic optical absorption in the plane of the film signify that the thiophene backbones are preferentially oriented along the dipping direction. Further, polarized light microscopy studies reveal that these films are highly birefringent. The nonlinear optical properties of PTHPUDT films were explored. Optical second harmonic generation (SHG) studies of multilayer films provide information regarding both the thiophene orientation within the film and the anisotropic distribution of chromophores in the surface plane. The third order nonlinear optical response of the polymer films was probed using z-scan methods. Analysis of the resulting z-scan data yielded values consistent with previous studies on PT-based polymer systems. However, even with relatively low intensities incident on pristine PTHPUDT polymer films, the required power to achieve a nonlinear response in the film is sufficient to produce photoinduced changes in the original polymer. Although our observations pertain specifically to PTHPUDT, our results may extend to the broader class of PT-based materials more generally. These observations put into question whether the nonlinear optical susceptibility values of PT-based materials currently being reported in the literature result from pristine polymers or from their photoconverted products. The chemistry occurring in the ordered films was examined. Large differences in both the thermal reactivity (thermochromism) and physical properties (solvatochromism) of the films were observed after heat-treatment. Taken together, this data offers strong evidence of highly-ordered films. As such, PTHPUDT is a model polymer system with potential of elucidating the connection between polymer morphology and physical properties in materials that are otherwise subject to a sufficiently complex distribution of morphologies that such a correspondence is precluded.
机译:描述了由两亲性,区域规则(RR)聚噻吩(PT)衍生物制成的有序薄膜的制备和表征。讨论了结构构象和顺序对材料性能和反应性的影响。聚(3-(11-(2-四氢吡喃氧基)十一烷基)噻吩(PTHPUDT)的高光学质量薄膜是通过Langmuir-Blodgett(LB)技术制备的。聚合物具有两亲性质,可进行逐层沉积,并形成头对头和尾对尾Y型结构的多层膜。 X射线衍射(XRD)研究表明形成了双层间隔约为30Å的半结晶膜。薄膜平面中的各向异性光吸收表明,噻吩主链优先沿浸渍方向取向。此外,偏光显微镜研究表明这些膜是高度双折射的。探索了PTHPUDT薄膜的非线性光学性质。多层膜的光学二次谐波生成(SHG)研究提供了有关膜内噻吩取向和表面平面中发色团各向异性分布的信息。使用z扫描方法探测聚合物薄膜的三阶非线性光学响应。对所得z扫描数据的分析得出的值与以前对PT基聚合物系统的研究一致。但是,即使入射到原始PTHPUDT聚合物薄膜上的强度相对较低,在薄膜中实现非线性响应所需的功率也足以在原始聚合物中产生光诱导的变化。尽管我们的观察结果专门针对PTHPUDT,但我们的结果可能更广泛地扩展到更广泛的PT基材料类别。这些发现使人们质疑目前文献中报道的基于PT的材料的非线性光学敏感性值是由原始聚合物还是由其光转化产物产生的。检查了有序薄膜中发生的化学反应。热处理后,观察到膜的热反应性(热致变色)和物理性质(溶剂变色)均存在较大差异。两者合计,这些数据提供了有序电影的有力证据。这样,PTHPUDT是一种模型聚合物系统,具有阐明聚合物形态与物理性质之间联系的潜力,这些物质否则会经历足够复杂的形态分布,从而无法进行这种对应。

著录项

  • 作者

    Mattu Jusroop Singh;

  • 作者单位
  • 年度 2008
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
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