Dussart Caitlyn, Maisse-François Aline, Bellemin-Laponnaz Stéphane
Institut de Physique et Chimie des Matériaux de Stasbourg (IPCMS), Université de Strasbourg - CNRS UMR 7504, Strasbourg Cedex, France.
Chirality. 2024 Oct;36(10):e23720. doi: 10.1002/chir.23720.
We have studied the coordination chemistry of chiral imidazoline-based C-symmetric ligands with zinc (II) and copper (II). Two types of bisimidazoline ligands were studied, one with the free amine (BIM-H) and the other with the amine protected by a toluene sulfonyl group in position 6 (BIM-Ts). The complexes formed were isolated, purified, and characterized, in particular by X-ray diffraction studies and CD in the case of the enantiopure complexes. By playing with the choice of ligand system (enantiopure or racemate), we were able to show that the selective formation of homoleptic and heteroleptic metal complexes can be controlled by means of the chiral molecular instruction of bisimidazoline ligands.
我们研究了手性咪唑啉基C对称配体与锌(II)和铜(II)的配位化学。研究了两种双咪唑啉配体,一种带有游离胺(BIM-H),另一种在6位带有甲苯磺酰基保护的胺(BIM-Ts)。所形成的配合物被分离、纯化并进行了表征,对于对映体纯的配合物,尤其通过X射线衍射研究和圆二色光谱进行了表征。通过改变配体体系(对映体纯或外消旋体)的选择,我们能够表明,双咪唑啉配体的手性分子指令可以控制同配和异配金属配合物的选择性形成。