Department of Chemistry, University of Cambridge, Lensfield Road, Cambridge CB2 1EW, UK.
Org Biomol Chem. 2020 Feb 26;18(8):1602-1606. doi: 10.1039/d0ob00068j.
The self-assembly of triaminopyrimidines with barbiturates and with cyanates was investigated in chloroform solution. Equimolar mixtures of two complementary components form stable macrocyclic 3 : 3 complexes (rosettes). The thermodynamics of self-assembly were quantified by using 1H NMR titrations to measure the strength of pairwise H-bonding interactions between two rosette components (K), allosteric cooperativity associated with formation of a second H-bonding interaction with each component, and the effective molarity for cyclisation of the rosette motif (EM). Pyrimidine-cyanurate interactions are an order of magnitude more favourable than pyrimidine-barbiturate interactions, so the cyanurate rosettes are significantly more stable than barbiturate rosettes. There is no allosteric cooperativity associated with rosette formation, but the chelate cooperativity quantified by the product K EM is exceptionally high (102-104), indicating that there are no other species present that compete with rosette assembly. The values of EM for rosette formation are approximately 2 M for all four rosettes studied and are not affected by differences in peripheral substituents or intrinsic H-bond strength.
在氯仿溶液中研究了三氨基嘧啶与巴比妥酸和氰酸酯的自组装。两种互补成分的等摩尔混合物形成稳定的大环 3:3 配合物(蔷薇花结)。通过使用 1H NMR 滴定来量化自组装的热力学,以测量两个蔷薇花结组件之间的氢键相互作用强度(K)、与每个组件形成第二个氢键相互作用相关的变构协同作用,以及蔷薇花结 motif 的有效摩尔浓度(EM)。嘧啶-氰尿酸酯相互作用的有利程度比嘧啶-巴比妥酸相互作用高一个数量级,因此氰尿酸酯蔷薇花结比巴比妥酸蔷薇花结稳定得多。蔷薇花结形成没有变构协同作用,但通过 K EM 产物量化的螯合协同作用非常高(102-104),表明没有其他竞争与蔷薇花结组装的物质存在。所研究的所有四个蔷薇花结的 EM 值约为 2 M,不受外围取代基或内在氢键强度的差异影响。