Instituto de Tecnologia Química e Biológica, UNL, Av. da República - EAN, 2780-157 Oeiras, Portugal.
Org Biomol Chem. 2009 Nov 21;7(22):4661-73. doi: 10.1039/b912940e. Epub 2009 Sep 9.
A hexaamine cage was synthesised in good yield by a [2+3] Schiff-base condensation followed by sodium borohydride reduction to be used as a receptor for the selective binding of anionic species. The protonation constants of the receptor, as well as its association constants with Cl(-), I(-), NO(3)(-), AcO(-), ClO(4)(-), H(2)PO(4)(-), SO(4)(2-), SeO(4)(2-) and S(2)O(3)(2-) were determined by potentiometry at 298.2 +/- 0.1 K in H(2)O-MeOH (50 : 50 v/v) and at ionic strength 0.10 +/- 0.01 mol dm(-3) in KTsO. These studies revealed a remarkable selectivity for dianionic tetrahedral anions by the protonated receptor, with association constants ranging 5.03-5.30 log units for the dianionic species and 1.49-2.97 log units for monoanionic ones. Single crystal X-ray determination of (H(6)xyl)(SO(4))(H(2)O)(6)(2).9.5H(2)O showed that one sulfate anion is encapsulated into the receptor cage sited between the two 2,4,6-triethylbenzene caps establishing three N-HO hydrogen bonds with two adjacent N-H binding sites and additional O-HO hydrogen bonding interactions with six water of crystallization molecules. Four water molecules of the (SO(4))(H(2)O)(6) cluster interact with H(6)xyl through N-HO hydrogen bonds. Molecular dynamics simulations (MD) carried out with SO(4)(2-) and Cl(-) anions in H(2)O-MeOH (50 : 50 v/v) allowed the full understanding of anion molecular recognition, the selectivity of the protonated receptor for SO(4)(2-) and the role played by the methanol and water solvent molecules.
一种六胺笼通过[2+3]席夫碱缩合反应合成,产率较高,然后用硼氢化钠还原,用作阴离子选择性结合的受体。通过电位法在 298.2±0.1 K 下,在 H2O-MeOH(50:50v/v)中,并在 KTsO 中离子强度为 0.10±0.01 mol dm-3 下,测定了受体的质子化常数以及与 Cl-、I-、NO3-、AcO-、ClO4-、H2PO4-、SO42-、SeO42-和 S2O32-的缔合常数。这些研究表明,质子化受体对二价四面体阴离子具有显著的选择性,与二价阴离子的缔合常数范围为 5.03-5.30 log 单位,与单价阴离子的缔合常数范围为 1.49-2.97 log 单位。(H6xyl)(SO4)(H2O)62·9.5H2O 的单晶 X 射线测定表明,一个硫酸根阴离子被包裹在受体笼内,位于两个 2,4,6-三乙基苯帽之间,与两个相邻的 N-H 结合位点形成三个 N-H-O 氢键,并与六个结晶水分子形成额外的 O-H-O 氢键。(SO4)(H2O)6 簇的四个水分子通过 N-H-O 氢键与H6xyl相互作用。在 H2O-MeOH(50:50v/v)中用 SO42-和 Cl-阴离子进行分子动力学模拟(MD),允许充分理解阴离子分子识别、质子化受体对 SO42-的选择性以及甲醇和水分子在溶剂中的作用。