Chekmeneva Elena, Hunter Christopher A, Packer Martin J, Turega Simon M
Department of Chemistry, University of Sheffield, Sheffield S3 7HF, and AstraZeneca, Alderley Park, Cheshire SK10 4TG, United Kingdom.
J Am Chem Soc. 2008 Dec 31;130(52):17718-25. doi: 10.1021/ja803434z.
A zinc porphyrin equipped with four amide H-bonding sites provides a rigid molecular receptor for the study of cooperative multipoint binding interactions. The interaction of this receptor with a variety of pyridine ligands bearing zero, one, and two H-bonding sites has been studied using UV/vis absorption, (1)H and (31)P NMR spectroscopy, and isothermal titration calorimetry in five different solvents. The results are analyzed in terms of a bound state that populates an ensemble of different complexes in which zero, one, or two of the potential H-bond interactions are formed. The key parameter that determines the behavior of the system is the product of the association constant for the H-bond interaction, K(H), and the effective molarity for the intramolecular interaction, EM. In the system reported here, EM is 0.1-1 M for all of the intramolecular interactions. For strong H-bonds (large K(H) in nonpolar solvents), all of the interactions are formed in the complex and the fully bound state dominates. In this case, additional binding interactions produce incremental increases in complex stability. However, for weaker H-bonds (small K(H) in polar solvents), the formation of additional interactions does not lead to an increase in the overall stability of the complex, due to the population of partially bound states.
一种带有四个酰胺氢键位点的锌卟啉为研究协同多点结合相互作用提供了一种刚性分子受体。使用紫外/可见吸收光谱、(1)H 和(31)P 核磁共振光谱以及等温滴定量热法,在五种不同溶剂中研究了该受体与多种带有零个、一个和两个氢键位点的吡啶配体之间的相互作用。结果根据一种结合态进行分析,该结合态构成了一个不同络合物的集合,其中形成了零个、一个或两个潜在的氢键相互作用。决定系统行为的关键参数是氢键相互作用的缔合常数 K(H) 与分子内相互作用的有效摩尔浓度 EM 的乘积。在此处报道的系统中,对于所有分子内相互作用,EM 为 0.1 - 1 M。对于强氢键(在非极性溶剂中 K(H) 较大),所有相互作用都在络合物中形成且完全结合态占主导。在这种情况下,额外的结合相互作用会使络合物稳定性逐渐增加。然而,对于较弱氢键(在极性溶剂中 K(H) 较小),由于部分结合态的存在,额外相互作用的形成并不会导致络合物整体稳定性增加。