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An Easy Access to Organic Salt-Based Stimuli-Responsive and Multifunctional Supramolecular Hydrogels

机译:容易获得基于有机盐的刺激反应和多功能超分子水凝胶。

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摘要

By exploiting orthogonal hydrogen bonding involving supramolecular synthons and hydrophobic/hydrophilic interactions, a new series of simple organic salt based hydrogelators derived from pyrene butyric acid and its beta-alanine amide derivative, and various primary amines has been achieved. The hydrogels were characterised by microscopy, table-top rheology and dynamic rheology. FTIR, variable-temperature H-1 NMR and emission spectroscopy established the role of various supramolecular interactions such as hydrogen bonding and p-p stacking in hydrogelation. Single-crystal X-ray diffraction (SXRD) studies supported the conclusion that orthogonal hydrogen bonding involving amide-amide and primary ammonium monocarboxylate (PAM) synthons indeed played a crucial role in hydrogelation. The hydrogels were found to be stimuli-responsive and were capable of sensing ammonia and adsorbing water-soluble dye (methylene blue). All the hydrogelators were biocompatible (MTT assay in RAW 264.7 cells), indicating their suitability for use in drug delivery.
机译:通过利用涉及超分子合成子和疏水/亲水相互作用的正交氢键,获得了一系列新的简单的基于有机盐的水凝胶化剂,其衍生自pyr丁酸及其β-丙氨酸酰胺衍生物以及各种伯胺。通过显微镜,台式流变学和动态流变学表征水凝胶。 FTIR,可变温度H-1 NMR和发射光谱确定了水凝胶化过程中各种超分子相互作用(例如氢键和p-p堆积)的作用。单晶X射线衍射(SXRD)研究支持以下结论:涉及酰胺-酰胺和伯一羧酸单铵(PAM)合成子的正交氢键确实在水凝胶化中起着关键作用。发现水凝胶具有刺激反应性,能够感知氨并吸附水溶性染料(亚甲基蓝)。所有的水凝胶化剂都是生物相容性的(在RAW 264.7细胞中进行MTT分析),表明它们适用于药物递送。

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