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Brewster angle microscopy: A preferential method for mesoscopic characterization of monolayers at the air/water interface

机译:布鲁斯特角显微镜:一种在空气/水界面介观表征单层的优先方法

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摘要

Knowledge of the mesoscopic morphology of condensed phase domains formed after the main phase transition in the two-phase coexistence region of Langmuir monolayers progressed rapidly with the development of the highly-sensitive imaging techniques, particularly by Brewster angle microscopy (BAM). Latest developments of commercial BAM instruments have been developed to a high technical level and allow upgrading to imaging ellipsometers which combine optical microscopy and ellipsometry and make the assessment of small layered structures or patterned thin films possible. A large variety of condensed phase domains different in mesoscopic sizes and shapes as well as their textural features has been observed which depend sensitively on the chemical structure of the amphiphilic monolayer and the system conditions, such as surface pressure and temperature. This unsuspected morphological variety of condensed phase domains has been proven not only in Langmuir monolayers but also in adsorbed monolayers (Gibbs monolayers), in Langmuir monolayers penetrated by dissolved surfactants or in adequate molecular recognition systems. The inner textures of domains can be explained on the basis of their geometry and the two-dimensional lattice in dependence of the tilt angle of the alkyl chains and gave rise to the development of a geometric concept on the basis of the molecular packing. New knowledge has been gained about non-equilibrium structures and their transition kinetics into the equilibrium state. Combined results obtained recently by BAM have enhanced the understanding of molecular organization in phase diagrams and binary mixtures. Recent advances in model studies about chiral discrimination effects and of the highly specific structural changes of host-monolayers by recognition of non-surface active guest-components have made progress. Semi-empirical quantum chemical methods have been used to gain insight into the role of different types of interactions involved in the main characteristics of mesoscopic length scale aggregates of mimetic systems.
机译:随着高度敏感的成像技术的发展,尤其是通过布鲁斯特角显微镜(Brewster angle microscopy,BAM)的发展,对Langmuir单层两相共存区域中的主要相变后形成的凝结相域的介观形态的认识迅速发展。商业BAM仪器的最新发展已经发展到了很高的技术水平,可以升级到结合了光学显微镜和椭偏仪的成像椭圆仪,从而可以评估小层结构或图案化的薄膜。已经观察到介观尺寸和形状以及它们的纹理特征不同的各种各样的冷凝相域,它们敏感地取决于两亲单分子层的化学结构和系统条件,例如表面压力和温度。不仅在Langmuir单分子层中,而且在吸附的单分子层(Gibbs单分子层),被溶解的表面活性剂渗透的Langmuir单分子层中,或在适当的分子识别系统中,都证明了这种浓缩相域的形态学多样性。畴的内部结构可以根据其几何形状和取决于烷基链的倾斜角的二维晶格来解释,并且基于分子堆积而引起了几何概念的发展。已获得有关非平衡结构及其向平衡态转变动力学的新知识。 BAM最近获得的合并结果增强了对相图和二元混合物中分子组织的理解。通过识别非表面活性客体组分,关于手性鉴别效应和主体单分子膜的高度特定结构变化的模型研究的最新进展已经取得进展。半经验量子化学方法已用于深入了解模拟系统的介观长度尺度集合体主要特征中涉及的不同类型相互作用的作用。

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