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基于聚噻吩的 LB 膜中动力学稳定的大规模结晶度。

Large scale crystallinity in kinetically stable polythiophene-based Langmuir-Blodgett films.

机构信息

Department of Chemistry, 4D LABS, and Laboratory for Advanced Spectroscopy and Imaging Research, Simon Fraser University, 8888 University Drive, Burnaby, BC V5A 1S6 Canada.

出版信息

J Am Chem Soc. 2010 Mar 10;132(9):3204-10. doi: 10.1021/ja910390g.

Abstract

The first direct observation of large scale molecular level ordering in a complex poly(3-alkylthiophene)-based thin film is reported. The fabrication and characterization of highly ordered thin films made from the regioregular, amphiphilic polythiophene derivative poly(3-(11-(2-tetrahydropyranyloxy)undecyl)thiophene) (PTHPUDT) are described. PTHPUDT affords kinetically stable, high optical quality films deposited layer-by-layer using the Langmuir-Blodgett (LB) method. X-ray diffraction studies confirm the deposition of a film with long-range order normal to the surface, characterized by bilayer separations of approximately 30 A. The films display in-plane anisotropy, associated with the preferential alignment of the polymer main chain in the dipping direction. Molecular resolution atomic force microscopy shows the presence of highly ordered crystalline domains within the plane, consistent with an ordered array of parallel, closed-packed, polythiophene chains. Polarized optical microscopy confirms the formation of large scale domains that display uniform optical retardation across macroscopic length scales. FeCl(3)-doped films yield anisotropic conduction behavior, suggesting higher rates of transport perpendicular to the main chain direction. The kinetic stability of these films is distinct from films of other polythiophenes, other deposition methods, and simpler amphiphiles, all of which tend toward their bulk, thermodynamically stable structures. This stability and long-range order are attributed to the amphiphilic nature of the polymer and the dimensional restrictions of the polymer's main chain, which limits the extent of structural defect-based reorganization, and the limited number of local structures of the alkyl chains. The degree and nature of the ordering in these semicrystalline films make them an ideal model system in which to elucidate the connection between morphology and physical property in complex pi-conjugated polymers.

摘要

首次直接观察到复杂聚(3-烷基噻吩)基薄膜中的大规模分子级有序。报道了具有规则结构、两亲性聚噻吩衍生物聚(3-(11-(2-四氢吡喃基)氧基)十一烷基噻吩)(PTHPUDT)的高有序薄膜的制备和表征。PTHPUDT 采用 Langmuir-Blodgett(LB)方法通过层层沉积提供了动力学稳定、光学质量高的薄膜。X 射线衍射研究证实了具有长程有序的薄膜的沉积,其特征是垂直于表面的双层分离约为 30Å。该薄膜具有面内各向异性,与聚合物主链在浸渍方向上的优先取向有关。分子分辨率原子力显微镜显示在平面内存在高度有序的结晶域,与平行、密堆积的聚噻吩链的有序排列一致。偏振光学显微镜证实了大尺度畴的形成,这些畴在宏观长度尺度上显示出均匀的光延迟。FeCl3 掺杂的薄膜表现出各向异性的传导行为,表明垂直于主链方向的传输速率更高。这些薄膜的动力学稳定性与其他聚噻吩、其他沉积方法和更简单的两亲分子的薄膜不同,所有这些薄膜都倾向于其本体、热力学稳定结构。这种稳定性和长程有序归因于聚合物的两亲性质和聚合物主链的维度限制,这限制了基于结构缺陷的重组的程度和烷基链的局部结构的数量。这些半晶态薄膜中有序的程度和性质使它们成为阐明复杂π共轭聚合物中形态和物理性质之间关系的理想模型体系。

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