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溶剂化诱导的假四面体手性铜(II)配合物的螺旋度反转

Solvation-induced helicity inversion of pseudotetrahedral chiral copper(II) complexes.

作者信息

Chamayou Anne-Christine, Makhloufi Gamall, Nafie Laurence A, Janiak Christoph, Lüdeke Steffen

机构信息

Institut für Pharmazeutische Wissenschaften, Universität Freiburg , Albertstr. 25, D-79104 Freiburg, Germany.

出版信息

Inorg Chem. 2015 Mar 2;54(5):2193-203. doi: 10.1021/ic502661u. Epub 2015 Feb 19.

Abstract

The helicity of four-coordinated nonplanar complexes is strongly correlated to the chirality of the ligand. However, the stereochemical induction of either the Δ- or the Λ-configuration at the metal ion is also modulated by environmental factors that change the conformational distribution of ligand rotamers. Calculation of the potential energy surface of bis{(R)-N-(1-(4-X-phenyl)ethyl)salicylaldiminato-κ(2)N,O}copper(II) with X = Cl at the density functional theory level showed a clear dependence of the helicity-determining angle θ between the two coordination planes on the relative population of different ligand conformers. The influence of different substituents (X = H, Cl, Br, and OCH3) on complex helicity was studied by determination of the absolute configuration at the metal ion in complexes with either (R)- or (S)-configured ligands. X-ray single-crystal analysis showed that (R)-configured ligands with H, Cl, Br induce Δ, while OCH3-substituted (R)-configured ligands induce Λ in the solid state. According to vibrational circular dichroism and electronic circular dichroism studies in solution, however, all tested complexes with (R)-ligands exhibited a propensity for Δ, with high diastereomeric ratio for X = Cl and X = Br and moderate diastereomeric ratio for X = H and X = OCH3 substituted ligands. Therefore, solvation of copper complexes with X = OCH3 goes along with helicity inversion. This solid-state versus solution study demonstrates that it is not sufficient to determine the chiral-at-metal configuration of a compound by X-ray crystallography alone, because the solution structure can be different. This is particularly important for the use of chiral-at-metal complexes as catalysts in stereoselective synthesis.

摘要

四配位非平面配合物的螺旋性与配体的手性密切相关。然而,金属离子上Δ-或Λ-构型的立体化学诱导也受到环境因素的调节,这些环境因素会改变配体旋转异构体的构象分布。在密度泛函理论水平上对X = Cl的双{(R)-N-(1-(4-X-苯基)乙基)水杨醛亚胺基-κ(2)N,O}铜(II)的势能面进行计算,结果表明两个配位平面之间决定螺旋性的角度θ明显依赖于不同配体构象的相对丰度。通过测定具有(R)-或(S)-构型配体的配合物中金属离子的绝对构型,研究了不同取代基(X = H、Cl、Br和OCH3)对配合物螺旋性的影响。X射线单晶分析表明,具有H、Cl、Br的(R)-构型配体在固态中诱导出Δ构型,而OCH3取代的(R)-构型配体诱导出Λ构型。然而,根据溶液中的振动圆二色性和电子圆二色性研究,所有测试的具有(R)-配体的配合物都表现出倾向于Δ构型,对于X = Cl和X = Br的配合物,非对映体比例较高,对于X = H和X = OCH3取代的配体,非对映体比例适中。因此,X = OCH3的铜配合物的溶剂化伴随着螺旋性反转。这项固态与溶液的研究表明,仅通过X射线晶体学来确定化合物在金属中心的手性构型是不够的,因为溶液结构可能不同。这对于在立体选择性合成中使用金属中心手性配合物作为催化剂尤为重要。

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