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Characterization of Molecular Arrangement of Long-chain Ferrocenyl Derivatives Having Asymmetric Carbon by Method of Organized Molecular Films and Formation of Its Helical Nanofibers

机译:通过有组织的分子膜的方法和其螺旋纳米纤维的形成,表征具有不对称碳的长链铁氧基衍生物的分子排列

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摘要

Formation of organized molecular film and helical nanofibers of ferrocene derivatives having R-12-hydroxystearyl chains with asymmetric carbon was investigated. The 12-hydroxystearyl chain, which induces “thixotropy” due to the formation and breakage of intermolecular hydrogen bonds, was introduced into the ferrocenyl unit. The structure of this derivative as a monolayer on the water surface and its Langmuir-Blodgett (LB) film properties were analyzed. The monolayer showed a two- dimensional phase transition, corresponding to the formation of fibrous morphology. In the LB multilayers, intermolecular hydrogen bonding between hydroxyl groups at the 12-position of the chain and crystalline packing was observed. Raman mapping revealed the difference in surface morphology of each derivative depending on the number of 12-hydroxystearyl chains. The derivative having the single chain showed a right- handed helical morphology in the film and this behavior is similar to those having two and three chains. In circular dichroism spectra, the film showed a positive Cotton effect. Since the helical chains easily entangle with each other to form a sponge-like organization, it was expected that the solvent uptake was the origin of gelation induction to its contact solvent.
机译:研究了具有不对称碳的R-12-羟基甲基链的二革革衍生物的有组织的分子膜和螺旋纳米纤维的形成。由于分子间氢键的形成和破裂,该链链链的12-羟基体链引入了甲基苯基单元。分析了该衍生物在水面上作为单层及其langmuir-blodgett(LB)膜特性的结构。单层显示二维相变,对应于纤维形态的形成。在LB多层中,观察到链链和晶体堆积的羟基之间的分子间氢键。拉曼映射揭示了每个衍生物的表面形态差异,具体取决于12-羟基胸链的数量。具有单链的衍生物在膜中显示出右手的螺旋形态,这种行为类似于具有两个和三个链的行为。在圆形的二色性光谱中,该膜显示出棉的阳性作用。由于螺旋链很容易彼此纠缠以形成一个类似海绵的组织,因此预计溶剂的摄取是凝胶化诱导其接触溶剂的起源。

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