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Using Polarized Spectroscopy to Investigate Order in Thin-Films of Ionic Self-Assembled Materials Based on Azo-Dyes

机译:使用偏振光谱研究基于偶氮染料的离子自组装材料薄膜中的有序性

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摘要

Three series of ionic self-assembled materials based on anionic azo-dyes and cationic benzalkonium surfactants were synthesized and thin films were prepared by spin-casting. These thin films appear isotropic when investigated with polarized optical microscopy, although they are highly anisotropic. Here, three series of homologous materials were studied to rationalize this observation. Investigating thin films of ordered molecular materials relies to a large extent on advanced experimental methods and large research infrastructure. A statement that in particular is true for thin films with nanoscopic order, where X-ray reflectometry, X-ray and neutron scattering, electron microscopy and atom force microscopy (AFM) has to be used to elucidate film morphology and the underlying molecular structure. Here, the thin films were investigated using AFM, optical microscopy and polarized absorption spectroscopy. It was shown that by using numerical method for treating the polarized absorption spectroscopy data, the molecular structure can be elucidated. Further, it was shown that polarized optical spectroscopy is a general tool that allows determination of the molecular order in thin films. Finally, it was found that full control of thermal history and rigorous control of the ionic self-assembly conditions are required to reproducibly make these materials of high nanoscopic order. Similarly, the conditions for spin-casting are shown to be determining for the overall thin film morphology, while molecular order is maintained.
机译:合成了三类基于阴离子偶氮染料和阳离子苯扎氯铵表面活性剂的离子自组装材料,并通过旋铸制备了薄膜。尽管它们是高度各向异性的,但是当通过偏振光学显微镜研究时,这些薄膜表现出各向同性。在这里,研究了三个系列的同源材料以合理化这一观察结果。研究有序分子材料的薄膜在很大程度上取决于先进的实验方法和庞大的研究基础设施。有一种说法特别适用于具有纳米级的薄膜,其中必须使用X射线反射法,X射线和中子散射,电子显微镜和原子力显微镜(AFM)来阐明薄膜的形态和潜在的分子结构。在这里,使用AFM,光学显微镜和偏振吸收光谱法研究了薄膜。结果表明,通过数值方法处理偏振吸收光谱数据,可以阐明分子结构。此外,已经表明,偏振光谱是允许确定薄膜中分子序的通用工具。最后,发现需要完全控制热历史并严格控制离子自组装条件才能可再现地制造这些具有高纳米级的材料。类似地,显示出旋转浇铸的条件决定了整个薄膜的形态,同时保持了分子顺序。

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