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The Supramolecular Organogel Formed by Self-Assembly of Ursolic Acid Appended with Aromatic Rings

机译:由熊果酸自组装形成的超分子有机凝胶与芳香环

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摘要

Ursolic acid (UA) as a natural ursane-triterpenoid has rich pharmacological activities. We have found that it possesses aggregation properties and could self-assemble into organogels. Based on the aggregation property of ursolic acid in suitable solvents, its derivative appended with aromatic rings by amide groups was synthesized. The property of self-assembly into organogel was studied in this paper. The results revealed that this derivative could form supramolecular gel in halogenated benzene and also gelate chloroform in the presence of toluene or p-xylene. By Fourier-transform infrared spectra (FT-IR) and variable temperature proton nuclear magnetic resonance (1H NMR), it was proved that intermolecular hydrogen bonding and π–π stacking interaction were the primary driving forces for the aggregation to form organogel.
机译:熊果酸(UA)作为天然的熊类三萜类化合物具有丰富的药理活性。我们发现它具有聚集特性,并且可以自组装成有机凝胶。根据熊果酸在适当溶剂中的聚集性质,合成了其衍生物带有酰胺基的芳香环。研究了自组装成有机凝胶的性质。结果表明,该衍生物可在卤代苯中形成超分子凝胶,并在甲苯或对二甲苯存在下使氯仿胶凝。通过傅立叶变换红外光谱(FT-IR)和可变温度质子核磁共振( 1 H NMR),证明分子间氢键和π-π堆积相互作用是产生氢的主要驱动力。聚集形成有机凝胶。

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