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具有独特手性光学性质的ω-氨烷基化 L-谷氨酸衍生物两亲分子凝胶。

Amphiphilic molecular gels from omega-aminoalkylated L-glutamic acid derivatives with unique chiroptical properties.

机构信息

Department of Applied Chemistry and Biochemistry, Kumamoto University, 2-39-1 Kurokami, Kumamoto, 860-8555, Japan.

出版信息

Amino Acids. 2010 Jul;39(2):587-97. doi: 10.1007/s00726-010-0480-z. Epub 2010 Jan 27.

Abstract

Self-assembling amphiphiles with unique chiroptical properties were derived from L-glutamic acid through omega-aminoalkylation and double long-chain alkylation. These amphiphiles can disperse in various solvents ranging from water to n-hexane. TEM and SEM observations indicate that the improvement in dispersity is induced by the formation of tubular and/or fibrillar aggregates with nanosized diameters, which makes these amphiphiles similar to aqueous lipid membrane systems. Spectroscopic observations, such as UV-visible and CD spectroscopies indicate that the aggregates are constructed on the basis of S- and R-chirally ordered structures through interamide interactions in water and organic media, respectively, and that these chiroptical properties can be controlled thermotropically and lyotropically. It is also reported that the chiral assemblies provide specific binding sites for achiral molecules and then induce chirality for the bonded molecules. Further, the applicability of the amphiphiles to template polymerization is discussed.

摘要

通过ω-氨烷基化和双长链烷基化,从 L-谷氨酸衍生出具有独特手性光学性质的自组装两亲分子。这些两亲分子可以分散在从水到正己烷的各种溶剂中。TEM 和 SEM 观察表明,分散性的提高是由管状和/或纤维状聚集体的形成引起的,这些聚集体具有纳米级直径,使这些两亲分子类似于水性脂质膜系统。光谱观察,如紫外可见和圆二色光谱表明,在水中和有机介质中,通过酰胺间相互作用,分别基于 S 和 R 手性有序结构构建了聚集体,并且这些手性光学性质可以热致调和溶致调地控制。还报道说,手性组装体为非手性分子提供了特定的结合位点,然后诱导键合分子的手性。此外,还讨论了两亲分子在模板聚合中的应用。

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