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Measurement of supra molecular effective molarities for intramolecular H-bonds in zinc porphyrin-imidazole complexes

机译:卟啉-咪唑锌配合物分子内氢键的超分子有效摩尔量的测量

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摘要

The association constants for formation of 1:1 complexes between five different imidazole ligands and eight different porphyrins have been measured by UV/vis titration experiments in two different solvents, toluene and 1,1,2,2-tetrachloroethane (TCE). Ligands equipped with H-bond acceptors (ester or amide) and porphyrins equipped with H-bond donors (phenol) can make H-bonds in addition to the zinc-nitrogen coordination interaction. The free energy contributions of these H-bonds to the overall stabilities of the complexes were determined using chemical double mutant cycles. Amide-phenol H-bonds contribute up to 5 kJ mol~(-1) to the free energy change on complexation, and ester-phenol H-bonds contribute up to 3 kJ mol~(-1). Porphyrin-ligand combinations with poor geometric complementarity do not make detectable H-bonding interactions. Effective molarities (EM) for the formation of H-bonds in the complexes were estimated by comparing the equilibrium constants for formation of the intramolecular interaction with the corresponding intermolecular interaction: the values are between 3 mM and 200 mM, which is comparable to previous results obtained for porphyrin-pyridine complexes. The values of EM measured for flexible and rigid ligand systems are comparable. This suggests that there is a trade off between restriction of conformational mobility in the flexible ligands and geometric strain in the rigid ligands, which results in similar binding affinities.
机译:在两种不同的溶剂甲苯和1,1,2,2-四氯乙烷(TCE)中通过UV / vis滴定实验测量了五个不同的咪唑配体和八个不同的卟啉之间形成1:1配合物的缔合常数。装备有氢键受体(酯或酰胺)的配体和装备有氢键供体(苯酚)的卟啉除锌-氮配位相互作用外,还可以形成氢键。使用化学双突变循环确定这些氢键对复合物整体稳定性的自由能贡献。酰胺-苯酚H-键对络合时的自由能变化贡献高达5 kJ mol〜(-1),而酯-苯酚H-键对络合作用贡献高达3 kJ mol〜(-1)。具有差的几何互补性的卟啉-配体组合不能产生可检测的H键相互作用。通过比较分子内相互作用形成的平衡常数和相应的分子间相互作用来估算复合物中形成氢键的有效摩尔浓度(EM):该值在3 mM至200 mM之间,与以前的结果相当用于卟啉-吡啶配合物。对于柔性和刚性配体体系测得的EM值是可比较的。这表明在柔性配体中的构象迁移率的限制与刚性配体中的几何应变之间存在折衷,这导致相似的结合亲和力。

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