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手性钌催化炔丙醇与丙酮的炔丙基取代反应的对映选择性:DFT 研究。

Enantioselectivity in Ruthenium-Catalyzed Propargylic Substitution Reactions of Propargylic Alcohols with Acetone: A DFT Study.

机构信息

Faculty of Pharmaceutical Sciences, Toho University, Miyama, Funabashi, Chiba, 274-8510, Japan.

Department of Applied Chemistry, School of Engineering, The University of Tokyo, Hongo, Bunkyo-ku, Tokyo, 113-8656, Japan.

出版信息

Chem Asian J. 2021 Nov 15;16(22):3760-3766. doi: 10.1002/asia.202100984. Epub 2021 Oct 7.

Abstract

The enantioselectivity in the propargylic substitution reactions of propargylic alcohols with acetone catalyzed by optically active thiolate-bridged diruthenium complexes was examined via ωB97X-D level DFT calculations. Some structures with intramolecular dispersion interactions between ligands were found for the ruthenium-allenylidene complex, which is the key intermediate in the catalytic reaction, and it was determined that the structure corresponding to the X-ray crystal structure, which had provided the transition state model for the enantioselectivity in previous studies, was not the most stable among the obtained structures. Then, a variety of transition-state structures for the nucleophilic attack of prop-1-ene-2-ol, which is the enol isomer of acetone, on the γ-carbon of the ruthenium-allenylidene complex were explored. Among the transition-state structures with lower energies, the number of structures leading to the major (R) product was found to be larger than that of structures leading to the minor (S) product, providing enantioselectivity in terms of probability distributions. The introduction of a phenyl group in the thiolate ligand was suggested to increase the selectivity. Thus, we propose the novel transition state model for the asymmetric catalytic reaction system.

摘要

通过 ωB97X-D 水平的 DFT 计算,研究了手性硫醇桥联双钌配合物催化的炔丙醇与丙酮的炔丙基取代反应的对映选择性。对于在催化反应中作为关键中间体的钌-烯丙叉络合物,发现了一些配体之间具有分子内分散相互作用的结构,而之前的研究中提供了对映选择性过渡态模型的 X 射线晶体结构对应的结构并不是所得到的结构中最稳定的。然后,探索了丙-1-烯-2-醇(丙酮的烯醇异构体)对钌-烯丙叉络合物的γ-碳进行亲核进攻的各种过渡态结构。在能量较低的过渡态结构中,发现导致主要 (R) 产物的结构数量大于导致次要 (S) 产物的结构数量,从概率分布的角度提供了对映选择性。建议在手性硫醇配体中引入苯基,以提高选择性。因此,我们提出了不对称催化反应体系的新型过渡态模型。

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