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Nanostructure of Binary Organogels via Trigonal Acids and Pyridine Derivatives

机译:通过三角酸和吡啶衍生物形成二元有机凝胶的纳米结构

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We reported here the gelation behaviors of binary trigonal acids and bipyridine derivatives mixtures in various organic solvents.Their gelation behaviors in 20 solvents were tested as new organic gelators.It was shown that the molecular shapes and substituent groups in these compounds played a crucial role in the gelation behavior of the compounds.While the trigonal acid with aromatic core can gel in acetone and ethanol,another trigonal acid with hydrophobic core can only gel in aniline.The molecular structures and substituent groups of bipyridine derivatives have also played an important role in changing the gelation behaviors and assembly states.SEM observations reveal that the molecular structures and the identity of the solvents are the main factors affecting the structures of the aggregates in the gels.Experimentally,different microstructures of the gels were observed.As example,the aggregates of trigonal compound in acetone,ethanol,or aniline adopt structures of belt-like aggregates or thin nanofibers,respectively.
机译:我们在这里报告了二元三角酸和联吡啶衍生物混合物在各种有机溶剂中的凝胶化行为,测试了它们在20种溶剂中的凝胶化行为作为新型有机凝胶剂,结果表明这些化合物的分子形状和取代基在其中起着至关重要的作用。具有芳族核的三角酸可在丙酮和乙醇中凝胶化,而具有疏水核的三角酸仅可在苯胺中凝胶化。联吡啶衍生物的分子结构和取代基在改变中也起着重要作用。 SEM观察表明,分子结构和溶剂的身份是影响凝胶中聚集体结构的主要因素。实验中,观察到凝胶的不同微观结构。丙酮,乙醇或苯胺中的三角化合物采用带状聚集体结构分别是纤细的纳米纤维或纤细的纳米纤维。

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