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基于 4,4'-联吡啶骨架的手性硫属元素键给体。

Chiral Chalcogen Bond Donors Based on the 4,4'-Bipyridine Scaffold.

机构信息

Strasbourg Institut of Chemistry, UMR CNRS 7177, Team LASYROC, 1 rue Blaise Pascal, University of Strasbourg, 67008 Strasbourg CEDEX, France.

Crystallography, Magnetic Resonance and Modelisations (CRM2), UMR CNRS 7036, University of Lorraine, Bd des Aiguillettes, 54506 Vandoeuvre-les-Nancy, France.

出版信息

Molecules. 2019 Dec 6;24(24):4484. doi: 10.3390/molecules24244484.

Abstract

Organocatalysis through chalcogen bonding (ChB) is in its infancy, as its proof-of-principle was only reported in 2016. Herein, we report the design and synthesis of new chiral ChB donors, as well as the catalytic activity evaluation of the 5,5'-dibromo-2,2'-dichloro-3-((perfluorophenyl)selanyl)-4,4'-bipyridine as organocatalyst. The latter is based on the use of two electron-withdrawing groups, a pentafluorophenyl ring and a tetrahalo-4,4'-bipyridine skeleton, as substituents at the selenium center. Atropisomery of the tetrahalo-4,4'-bipyridine motif provides a chiral environment to these new ChB donors. Their synthesis was achieved through either selective lithium exchange and trapping or a site-selective copper-mediated reaction. Pure enantiomers of the 3-selanyl-4,4'-bipyridine were obtained by high performance liquid chromatography enantioseparation on specific chiral stationary phase, and their absolute configuration was assigned by comparison of the measured and calculated electronic circular dichroism spectra. The capability of the selenium compound to participate in σ-hole-based interactions in solution was studied by F NMR. Even if no asymmetric induction has been observed so far, the new selenium motif proved to be catalytically active in the reduction of 2-phenylquinoline by Hantzsch ester.

摘要

有机催化通过硫属键(ChB)尚处于起步阶段,其原理的验证仅在 2016 年报道。在此,我们设计并合成了新型手性 ChB 供体,并对 5,5'-二溴-2,2'-二氯-3-((全氟苯基)硒基)-4,4'-联吡啶作为有机催化剂的催化活性进行了评估。后者基于在硒中心使用两个吸电子基团,即五氟苯基环和四卤代-4,4'-联吡啶骨架作为取代基。四卤代-4,4'-联吡啶基序的阻转异构为这些新型 ChB 供体提供了手性环境。它们的合成是通过选择性锂交换和捕获或位点选择性铜介导反应来实现的。通过特定手性固定相的高效液相色谱对映体分离,获得了 3-硒基-4,4'-联吡啶的纯对映异构体,并通过比较实测和计算的电子圆二色谱来确定其绝对构型。通过 F NMR 研究了硒化合物在溶液中参与σ-hole 基相互作用的能力。尽管目前尚未观察到不对称诱导,但新的硒基序已被证明在 Hantzsch 酯还原 2-苯基喹啉中具有催化活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/90fe/6943643/4b65f870ab97/molecules-24-04484-g001.jpg

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