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Using EPR spectroscopy as a unique probe of molecular-scale reorganization and solvation in self-assembled gel-phase materials

机译:使用EPR光谱作为自组装凝胶相材料中分子尺度重组和溶剂化的独特探针

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摘要

We describe the synthesis of spin-labeled bis-ureas which coassemble with bis-urea gelators and report on self-assembly as detected using electron paramagnetic resonance spectroscopy (EPR). Specifically, EPR detects the gel-sol transition and allows us to quantify how much spin-label is immobilized within the gel fibers and how much is present in mobile solvent pools-as controlled by temperature, gelator structure, and thermal history. EPR is also able to report on the initial self-assembly processes below the gelation threshold which are not macroscopically visible and appears to be more sensitive than NMR to intermediate-sized nongelating oligomeric species. By studying dilute solutions of gelator molecules and using either single or double spin-labels, EPR allows quantification of the initial steps of the hierarchical self-assembly process in terms of cooperativity and association constant. Finally, EPR enables us to estimate the degree of gel-fiber solvation by probing the distances between spin-labels. Comparison of experimental data against the predicted distances assuming the nanofibers are only composed of gelator molecules indicates a significant difference, which can be assigned to the presence of a quantifiable number of explicit solvent molecules. In summary, EPR provides unique data and yields powerful insight into how molecular-scale mobility and solvation impact on assembly of supramolecular gels.
机译:我们描述了与双脲凝胶剂共组装的自旋标记双脲的合成,并报道了使用电子顺磁共振波谱(EPR)检测到的自组装报告。具体来说,EPR检测凝胶-溶胶的转变,并允许我们量化凝胶中固定的旋转标记的数量以及在移动溶剂池中存在的数量(受温度,胶凝剂结构和热历史的控制)。 EPR还可以报告低于胶凝阈值的初始自组装过程,该过程在宏观上是不可见的,并且比NMR对中等大小的非胶凝性低聚物质更敏感。通过研究胶凝剂分子的稀溶液并使用单个或两个自旋标记,EPR可以根据协同性和缔合常数对分级自组装过程的初始步骤进行定量。最后,EPR使我们能够通过探测自旋标记之间的距离来估计凝胶纤维的溶解度。假设纳米纤维仅由胶凝剂分子组成,则将实验数据与预测距离进行比较表明存在显着差异,这可以归因于存在一定数量的显式溶剂分子。总而言之,EPR提供了独特的数据,并对分子尺度的流动性和溶剂化如何影响超分子凝胶的组装产生了深刻的见解。

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