首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Supramolecular assemblies and molecular recognition of amphiphilic Schiff bases with barbituric acid in organized molecular films
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Supramolecular assemblies and molecular recognition of amphiphilic Schiff bases with barbituric acid in organized molecular films

机译:两性席夫碱与巴比妥酸的超分子组装和分子识别在有组织的分子膜中

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摘要

A bolaform Schiff base, N,N-bis(salicylidene)-1,10-decanediamine (BSC10), has been synthesized and its interfacial hydrogen bond formation or molecular recognition with barbituric acid was investigated in comparison with that of a single chain Schiff base, 2-hydroxybenzaldehyde-octadecylamine (HBOA). It has been found that while HBOA formed a monolayer at the air/water interface, the bolaform Schiff base formed a multilayer film with ordered layer structure on water surface. When the Schiff bases were spread on the subphase containing barbituric acid, both of the Schiff bases could form hydrogen bonds with barbituric acid in situ in the spreading films. As a result, an increase of the molecular areas in the isotherms was observed. The in situ H-bonded films could be transferred onto solid substrates, and the transferred multilayer films were characterized by various methods such as UV-vis and FT-IR spectrosopies. Spectral changes were observed for the films deposited from the barbituric acid subphase, which supported the hydrogen bond formation between the Schiff bases and barbituric acid. By measuring the MS-TOF of the deposited films dissolved in CHCl3 solution, it was concluded that a 2:1 complex of HBOA with barbituric acid and a 1:2 complex of BSC10 with barbituric acid were formed. On the other hand, when the multilayer films of both Schiff bases were immersed in an aqueous solution of barbituric acid, a similar molecular recognition through the hydrogen bond Occurred. A clear conformational change of the alkyl spacer in the bolaform Schiff base was observed during the complex formation with the barbituric acid.
机译:合成了一种球形Schiff碱N,N-双(水杨基亚基)-1,10-癸二胺(BSC10),并与单链Schiff碱进行了比较,研究了其界面氢键的形成或与巴比妥酸的分子识别,2-羟基苯甲醛-十八烷基胺(HBOA)。已经发现,尽管HBOA在空气/水界面处形成单层,但球形Schiff碱在水表面上形成具有有序层结构的多层膜。当席夫碱在含有巴比妥酸的亚相上扩散时,两个席夫碱都可以在扩散膜中与巴比妥酸原位形成氢键。结果,观察到等温线中分子面积的增加。可以将原位H键合薄膜转移到固体基质上,并通过各种方法(例如UV-vis和FT-IR光谱)对转移的多层膜进行表征。从巴比妥酸亚相沉积的薄膜观察到光谱变化,这支持了席夫碱和巴比妥酸之间的氢键形成。通过测量溶解在CHCl3溶液中的沉积膜的MS-TOF,得出结论:形成了HBOA与巴比妥酸的2:1配合物和BSC10与巴比妥酸的1:2配合物。另一方面,当将两种席夫碱的多层膜浸入巴比妥酸的水溶液中时,通过氢键发生类似的分子识别。在与巴比妥酸形成络合物的过程中,观察到了链状席夫碱中烷基间隔基的清晰构象变化。

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