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手性超分子凝胶的混合对映异构体增强机械和热强度。

Enhanced Mechanical and Thermal Strength in Mixed-Enantiomers-Based Supramolecular Gel.

机构信息

Department of Chemistry, Science Institute , University of Iceland , Dunhagi 3 , 107 Reykjavík , Iceland.

Centre of Biological Engineering , University of Minho , Campus de Gualtar , 4710-057 Braga , Portugal.

出版信息

Langmuir. 2018 Oct 30;34(43):12957-12967. doi: 10.1021/acs.langmuir.8b02729. Epub 2018 Oct 15.

DOI:10.1021/acs.langmuir.8b02729
PMID:30272986
Abstract

Mixing supramolecular gels based on enantiomers leads to re-arrangement of gel fibers at the molecular level, which results in more favorable packing and tunable properties. Bis(urea) compounds tagged with a phenylalanine methyl ester in racemic and enantiopure forms were synthesized. Both enantiopure and racemate compounds formed gels in a wide range of solvents and the racemate (1-rac) formed a stronger gel network compared with the enantiomers. The gel (1R+1S) obtained by mixing equimolar amount of enantiomers (1R and 1S) showed enhanced mechanical and thermal stability compared to enantiomers and racemate gels. The preservation of chirality in these compounds was analyzed by circular dichroism and optical rotation measurements. Analysis of the scanning electron microscopy (SEM) and atomic force microscopy (AFM) images revealed that the network in the mixed gel is a combination of enantiomers and racemate fibers, which was further supported by solid-state NMR. The analysis of the packing in xerogels by solid-state NMR spectra and the existence of twisted-tape morphology in SEM and AFM images confirmed the presence of both self-sorted and co-assembled fibers in mixed gel. The enhanced thermal and mechanical strength may be attributed to the enhanced intermolecular forces between the racemate and the enantiomer and the combination of both self-sorted and co-assembled enantiomers in the mixed gel.

摘要

基于对映体的超分子凝胶混合会导致凝胶纤维在分子水平上重新排列,从而产生更有利的堆积和可调的性质。合成了带有苯丙氨酸甲酯的手性和对映纯形式的双(脲)化合物。两种对映纯和外消旋化合物都在很宽的溶剂范围内形成凝胶,外消旋化合物(1-rac)与对映异构体相比形成了更强的凝胶网络。通过混合等摩尔量的对映异构体(1R 和 1S)获得的凝胶(1R+1S)与对映异构体和外消旋凝胶相比,表现出增强的机械和热稳定性。通过圆二色性和旋光测量分析了这些化合物中手性的保留情况。扫描电子显微镜(SEM)和原子力显微镜(AFM)图像的分析表明,混合凝胶中的网络是对映异构体和外消旋纤维的组合,这进一步得到了固态 NMR 的支持。固态 NMR 谱分析干凝胶中的堆积情况以及 SEM 和 AFM 图像中扭曲带形态的存在证实了混合凝胶中既有自组装纤维也有共组装纤维。增强的热和机械强度可能归因于外消旋物和对映异构体之间增强的分子间力以及混合凝胶中自组装和共组装对映异构体的组合。

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