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In situ synthesis-gelation at room temperature vs. heating–cooling procedure. Fine tuning of molecular gels derived from succinic acid and L-valine

机译:原位合成 - 室温下凝胶化加热 - 冷却程序。微调衍生自琥珀酸和L-缬氨酸的分子凝胶

摘要

HypothesisThe reaction between succinic anhydride and a diamine derived from L-valine should afford efficiently a molecular gelator. Based on this reaction, it should be feasible to prepare molecular gels at room temperature, avoiding the conventional thermal treatment required for the solubilization of the gelator, by in situ, simultaneous, synthesis and gelation. The gels prepared by in situ and conventional heating–cooling protocols could present important differences relevant for potential practical applications of these materials.ExperimentalThe gelator was synthesized by reaction of succinic anhydride and a diamine derived from L-valine, affording two new amide bonds. The molecular gels were studied by IR, NMR, electron microscopy, X-ray diffraction and DSC.FindingsThe results indicate that different polymorphic fibrillar networks are formed depending on the gel preparation method, highlighting how the properties of molecular gels can be tuned in this way. Significant differences between thermal and in situ gels were found in properties such as thermal stability, thixotropic behavior or release of an entrapped dye. In situ synthesis-gelation has also been shown to provide gels in media such as oleic acid which cannot be jellified by conventional heating–cooling procedures.
机译:假设琥珀酸酐与L-缬氨酸衍生的二胺之间的反应应有效地提供分子胶凝剂。基于该反应,在室温下制备分子凝胶应该是可行的,避免了通过原位,同时,合成和凝胶化来溶解胶凝剂所需的常规热处理。通过原位和常规加热-冷却方案制备的凝胶可能会表现出与这些材料的潜在实际应用相关的重要差异。实验性凝胶剂是由琥珀酸酐与衍生自L-缬氨酸的二胺反应合成的,具有两个新的酰胺键。通过IR,NMR,电子显微镜,X射线衍射和DSC对分子凝胶进行了研究。结果表明,取决于凝胶制备方法,会形成不同的多晶型原纤维网络,从而突出了如何以这种方式调节分子凝胶的性能。 。发现在热凝胶和原位凝胶之间存在显着差异,例如热稳定性,触变性或捕获的染料释放等特性。还显示出原位合成凝胶化可在油酸等介质中提供凝胶,而传统的加热-冷却程序无法使其胶凝。

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