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双(吡啶)碘(I)配合物是否适用于不对称卤化?

Are bis(pyridine)iodine(I) complexes applicable for asymmetric halogenation?

机构信息

Department of Chemistry - BMC, Uppsala University, SE-751 23 Uppsala, Sweden.

Institute of Organic Chemistry, Research Centre for Natural Sciences, H-1117 Budapest, Hungary.

出版信息

Org Biomol Chem. 2021 Oct 6;19(38):8307-8323. doi: 10.1039/d1ob01532j.

Abstract

Enantiopure halogenated molecules are of tremendous importance as synthetic intermediates in the construction of pharmaceuticals, fragrances, flavours, natural products, pesticides, and functional materials. Enantioselective halofunctionalizations remain poorly understood and generally applicable procedures are lacking. The applicability of chiral -chelating bis(pyridine)iodine(I) complexes in the development of substrate independent, catalytic enantioselective halofunctionalization has been explored herein. Six novel chiral bidentate pyridine donor ligands have been designed, routes for their synthesis developed and their [N-I-N]-type halogen bond complexes studied by N NMR and DFT. The chiral complexes encompassing a halogen bond stabilized iodenium ion are shown to be capable of efficient iodenium transfer to alkenes; however, without enantioselectivity. The lack of stereoselectivity is shown to originate from the availability of multiple ligand conformations of comparable energies and an insufficient steric influence by the chiral ligand. Substrate preorganization by the chiral catalyst appears a necessity for enantioselective halofunctionalization.

摘要

手性螯合双吡啶碘(I)配合物在手性催化剂的发展中具有底物独立性和催化对映选择性卤官能化的应用潜力。本文探索了手性螯合双吡啶碘(I)配合物在发展具有底物独立性、催化对映选择性卤官能化中的适用性。设计了六种新型手性双吡啶给体配体,开发了它们的合成路线,并通过 N NMR 和 DFT 研究了它们的[N-I-N]型卤素键配合物。结果表明,包含卤素键稳定的碘翁离子的手性配合物能够有效地将碘翁转移到烯烃上;然而,没有对映选择性。缺乏立体选择性的原因是手性配体的可用配体构象数量多,能量相近,并且立体位阻的影响不足。手性催化剂的底物预组织似乎是对映选择性卤官能化所必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/254b/8494190/0302812d9c6e/d1ob01532j-f1.jpg

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