Li Longfei, Yang Shuo, Xu Zhongyun, Li Shengxiao, Jiang Jie, Zhang Yong-Qiang
School of Chemistry and Chemical Engineering, Shandong University, Jinan 250100, P. R. China.
J Am Chem Soc. 2024 May 15;146(19):13546-13557. doi: 10.1021/jacs.4c03346. Epub 2024 May 1.
Glycidic esters represent pivotal constituents in synthetic chemistry, offering enhanced versatility for tailoring toward a diverse array of molecular targets in comparison with simple epoxides. While considerable progress has been made in the asymmetric synthesis of - and trisubstituted glycidic esters, achieving enantioselective preparation of -glycidic esters has remained a long-standing challenge. Here, we demonstrate a selectivity-predictable modular platform for the asymmetric synthesis of -glycidic esters via a novel dinuclear (salen)titanium(III)-catalyzed radical-type kinetic resolution (KR) approach. This radical KR protocol operates under mild conditions and demonstrates a wide substrate scope, facilitating the synthesis of alkyl- and aryl-substituted -glycidic esters with high levels of regioselectivity and enantioselectivity, along with hydroxy ester byproducts representing synthetically valuable motifs as well. This study presents a unique exploration of radical-type KR applied to epoxides, effectively overcoming the steric challenges inherent in conventional nucleophilic-type methodologies typically employed in epoxide chemistry.
缩水甘油酸酯是合成化学中的关键成分,与简单环氧化物相比,它在针对各种分子靶点进行定制方面具有更高的通用性。虽然在不对称合成α-和三取代缩水甘油酸酯方面已经取得了相当大的进展,但实现对映选择性制备β-缩水甘油酸酯仍然是一个长期存在的挑战。在这里,我们展示了一个选择性可预测的模块化平台,用于通过一种新型双核(salen)钛(III)催化的自由基型动力学拆分(KR)方法不对称合成β-缩水甘油酸酯。这种自由基KR方案在温和条件下运行,展示了广泛的底物范围,有助于合成具有高区域选择性和对映选择性的烷基和芳基取代的β-缩水甘油酸酯,以及同样具有合成价值的羟基酯副产物。这项研究对应用于环氧化物的自由基型KR进行了独特的探索,有效克服了环氧化物化学中通常采用的传统亲核型方法固有的空间挑战。