Towards Building Blocks for Supramolecular Architectures Based on Azacryptates

超分子化学 乙腈 化学 胺气处理 共价键 联苯 超分子组装 离子 组合化学 结晶学 有机化学 晶体结构
作者
Ana Miljkovic,Sonia La Cognata,Greta Bergamaschi,Mauro Freccero,Antonio Poggi,Valeria Amendola
出处
期刊:Molecules [Multidisciplinary Digital Publishing Institute]
卷期号:25 (7): 1733-1733 被引量:6
标识
DOI:10.3390/molecules25071733
摘要

In this work, we report the synthesis of a new bis(tris(2-aminoethyl)amine) azacryptand L with triphenyl spacers. The binding properties of its dicopper complex for aromatic dicarboxylate anions (as TBA salts) were investigated, with the aim to obtain potential building blocks for supramolecular structures like rotaxanes and pseudo-rotaxanes. As expected, UV-Vis and emission studies of [Cu2L]4+ in water/acetonitrile mixture (pH = 7) showed a high affinity for biphenyl-4,4′-dicarboxylate (dfc2−), with a binding constant of 5.46 log units, due to the best match of the anion bite with the Cu(II)-Cu(II) distance in the cage’s cavity. Compared to other similar bistren cages, the difference of the affinity of [Cu2L]4+ for the tested anions was not so pronounced: conformational changes of L seem to promote a good interaction with both long (e.g., dfc2−) and short anions (e.g., terephthalate). The good affinity of [Cu2L]4+ for these dicarboxylates, together with hydrophobic interactions within the cage’s cavity, may promote the self-assembly of a stable 1:1 complex in water mixture. These results represent a good starting point for the application of these molecular systems as building units for the design of new supramolecular architectures based on non-covalent interactions, which could be of interest in all fields related to supramolecular devices.
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