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Supramolecular Motif And Macroscopic Pattern In Alpha-methylferrocenemethanol Films Cast From Organic Solution

机译:有机溶液铸成的α-甲基二茂铁甲醇薄膜的超分子图案和宏观图案

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The macroscopic patterns were formed in alpha-methylferrocenemethanol films cast from organic solutions. The macroscopic pattern was composed of concentric rings in the solid film. The concentric rings consist of convex ridges and concave valleys; the ordered phase constitutes the convex ridges, while the concave valleys barely contain anything. It has been found that, as for the solvent which can form hydrogen bonding with the solute and has suitable evaporation rate, macroscopic pattern could be observed in the solid film; while as for the solvent that cannot form hydrogen bonding with the solute, no macroscopic pattern would appear. It was suggested that, intermolecular hydrogen bonding and aromatic π stacking interactions of the solute is responsible for the formation of the microscopic crystalline structure; while the hydrogen bonding between the solute and the solvent, and the solvent-evaporation-induced crystallization process, as well as the solvent-evaporation-induced convections are responsible for the formation of the macroscopic pattern. The results could offer a facile way to the electronic material films with well-defined spatial alignment.
机译:在由有机溶液流延的α-甲基二茂铁甲醇薄膜中形成宏观图案。宏观图案由固体膜中的同心环组成。同心环由凸脊和凹谷组成。有序相构成凸脊,而凹谷几乎不包含任何东西。已经发现,对于能够与溶质形成氢键并具有合适的蒸发速率的溶剂,可以在固体膜中观察到宏观图案。至于不能与溶质形成氢键的溶剂,则不会出现宏观图案。有人认为,溶质的分子间氢键和芳族π堆积相互作用是造成微观晶体结构的原因。溶质与溶剂之间的氢键,溶剂蒸发引起的结晶过程以及溶剂蒸发引起的对流是形成宏观图案的原因。结果可以为具有明确定义的空间对准的电子材料膜提供一种简便的方法。

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