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理解并量化溶质-溶剂范德华相互作用对不对称催化转化选择性的影响。

Understanding and quantifying the impact of solute-solvent van der Waals interactions on the selectivity of asymmetric catalytic transformations.

作者信息

Kayal Riya, Baldinelli Lorenzo, Harden Ingolf, Neese Frank, Bistoni Giovanni

机构信息

Max-Planck-Institut für Kohlenforschung Kaiser-Wilhelm Platz 1 45470 Mülheim an der Ruhr Germany

Department of Chemistry, Biology and Biotechnology, University of Perugia Via Elce di Sotto, 8 06123 Perugia Italy

出版信息

Chem Sci. 2024 Dec 26;16(6):2700-2709. doi: 10.1039/d4sc04329d. eCollection 2025 Feb 5.

Abstract

The majority of enantioselective organocatalytic reactions occur in apolar or weakly polar organic solvents. Nevertheless, the influence of solute-solvent van der Waals forces on the relative kinetics of competitive pathways remains poorly understood. In this study, we provide a first insight into the nature and strength of these interactions at the transition state level using advanced computational tools, shedding light into their influence on the selectivity. In addition, we introduce a series of computational tools tailored for detailed exploration of the role of the organic solvent across diverse research disciplines. As a case study, we selected a highly relevant asymmetric organocatalytic transformation catalyzed by a chiral Brønsted acid. Our analysis reveals that strong dispersion interactions exist between the transition state and the solvent, predominantly involving specific groups of the catalyst rather than being uniformly distributed around the solute. Short-range repulsion between the transition state and the solvent often counteracts the effect of these dispersion forces on the transition state energy, resulting in a minimal overall influence of solute-solvent van der Waals forces on enantioselectivity. However, for certain geometric configurations of the transition states, the effect these interactions remains significant, favoring specific reaction channels. These results suggest that integrating solvent structural and electronic information into catalyst design strategies could offer new avenues for tuning selectivity of organocatalytic processes.

摘要

大多数对映选择性有机催化反应发生在非极性或弱极性有机溶剂中。然而,溶质 - 溶剂范德华力对竞争途径相对动力学的影响仍知之甚少。在本研究中,我们使用先进的计算工具首次深入了解了过渡态水平上这些相互作用的性质和强度,揭示了它们对选择性的影响。此外,我们引入了一系列专门用于详细探索有机溶剂在不同研究领域中作用的计算工具。作为案例研究,我们选择了一种由手性布朗斯特酸催化的高度相关的不对称有机催化转化反应。我们的分析表明,过渡态与溶剂之间存在强烈的色散相互作用,主要涉及催化剂的特定基团,而非均匀分布在溶质周围。过渡态与溶剂之间的短程排斥作用常常抵消这些色散力对过渡态能量的影响,导致溶质 - 溶剂范德华力对对映选择性的总体影响最小。然而,对于过渡态的某些几何构型,这些相互作用的影响仍然显著,有利于特定的反应通道。这些结果表明,将溶剂的结构和电子信息整合到催化剂设计策略中,可以为调节有机催化过程的选择性提供新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee07/11795836/47b6bc0773c0/d4sc04329d-s1.jpg

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