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手性苯-1,3,5-三羧酸酰胺螺旋组装体和催化剂的在手性单体加入下的出现。

Emergence of Homochiral Benzene-1,3,5-tricarboxamide Helical Assemblies and Catalysts upon Addition of an Achiral Monomer.

机构信息

Sorbonne Université, CNRS, Institut Parisien de Chimie Moléculaire, Equipe Chimie des Polymères, 4 Place Jussieu, 75005 Paris, France.

出版信息

J Am Chem Soc. 2020 Mar 25;142(12):5676-5688. doi: 10.1021/jacs.9b13157. Epub 2020 Mar 10.

Abstract

Chirality amplification refers to the ability of a small chiral bias to fully control the main chain helicity of polymers and assemblies. Further implementation of functional chirally amplified helices as switchable asymmetric catalysts, chiral sensors, and circularly polarized light emitters will require a greater control of the energetics governing these chirality amplification effects. In this work, we report on the counterintuitive ability of an achiral molecule to suppress conformational defects in supramolecular helices, thus leading to the emergence of homochirality in a system containing a very small chiral bias. We focus our investigation on supramolecular helices composed of an achiral benzene-1,3,5-tricarboxamide (BTA) ligand, coordinated to copper, and an enantiopure BTA comonomer. Amplification of chirality as probed by varying the amount (sergeants and soldiers effect) or the optical purity (diluted majority-rules effect) of the enantiopure comonomer are modest in this initial system. However, both effects are hugely enhanced upon addition of a second achiral BTA monomer, leading to a perfect control of the helicity either by means of a remarkably low amount of sergeants (0.5%) or a small bias from a racemic mixture of enantiopure comonomers (10% ee). Such an enhancement in the amplification of chirality is only achieved by mixing the three components, i.e. the two achiral and the enantiopure comonomers, highlighting a synergistic effect upon coassembly of the three monomers. Investigation of the role of the achiral additive by multifarious analytical techniques supports its ability to stabilize the helical coassemblies and suppress helix reversals: i.e., conformational defects. Implementation of these helical copper precatalysts in the hydrosilylation of 1-(4-nitrophenyl)ethanone confirms that the effect of the achiral BTA additive is also operative under the conditions of the catalytic experiment. A highly enantioenriched product (90% ee) is produced by a supramolecular catalyst operating with ppm levels of chiral species.

摘要

手性放大是指小的手性偏差完全控制聚合物和组装体主链螺旋的能力。进一步将功能手性放大螺旋实施为可切换的不对称催化剂、手性传感器和圆偏振光发射器,将需要更好地控制控制这些手性放大效应的能量学。在这项工作中,我们报告了一种非手性分子抑制超分子螺旋中构象缺陷的反直觉能力,从而在手性偏差非常小的系统中出现同手性。我们的研究重点是由非手性苯-1,3,5-三羧酸酰胺 (BTA) 配体与铜配位形成的超分子螺旋,以及对映纯 BTA 共聚单体。通过改变对映纯共聚单体的量(军士和士兵效应)或光学纯度(稀释多数规则效应)来探测手性放大,在这个初始系统中效果适中。然而,在添加第二种非手性 BTA 单体后,这两种效应都得到了极大的增强,从而通过非常少量的军士(0.5%)或手性混合物中微量的对映纯共聚单体(10%ee)对手性的完美控制。通过混合三种成分,即两种非手性和对映纯共聚单体,实现了手性放大的这种增强,突出了三种单体共组装时的协同效应。通过多种分析技术研究非手性添加剂的作用,支持其稳定螺旋共组装体并抑制螺旋反转的能力:即构象缺陷。在 1-(4-硝基苯基)乙酮的硅氢化反应中实施这些手性铜前催化剂,证实了非手性 BTA 添加剂的作用在催化实验条件下也是有效的。在 ppm 级手性物种存在下,超分子催化剂可生成高度对映体富集的产物(90%ee)。

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