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异双核过渡金属/稀土金属双功能催化:Cu/Sm/Schiff 碱配合物用于 syn-选择性催化不对称硝基金属 Mannich 反应。

Heterobimetallic transition metal/rare earth metal bifunctional catalysis: a Cu/Sm/Schiff base complex for syn-selective catalytic asymmetric nitro-Mannich reaction.

机构信息

Graduate School of Pharmaceutical Sciences, The University of Tokyo, Hongo 7-3-1, Bunkyo-ku, Tokyo 113-0033, Japan.

出版信息

J Am Chem Soc. 2010 Apr 7;132(13):4925-34. doi: 10.1021/ja100514y.

Abstract

The full details of a catalytic asymmetric syn-selective nitro-Mannich reaction promoted by heterobimetallic Cu/Sm/dinucleating Schiff base complexes are described, demonstrating the effectiveness of the heterobimetallic transition metal/rare earth metal bifunctional catalysis. The first-generation system prepared from Cu(OAc)(2)/Sm(O-iPr)(3)/Schiff base 1a = 1:1:1 with an achiral phenol additive was partially successful for achieving the syn-selective catalytic asymmetric nitro-Mannich reaction. The substrate scope and limitations of the first-generation system remained problematic. After mechanistic studies on the catalyst prepared from Sm(O-iPr)(3), we reoptimized the catalyst preparation method, and a catalyst derived from Sm(5)O(O-iPr)(13) showed broader substrate generality as well as higher reactivity and stereoselectivity compared to Sm(O-iPr)(3). The optimal system with Sm(5)O(O-iPr)(13) was applicable to various aromatic, heteroaromatic, and isomerizable aliphatic N-Boc imines, giving products in 66-99% ee and syn/anti = >20:1-13:1. Catalytic asymmetric synthesis of nemonapride is also demonstrated using the catalyst derived from Sm(5)O(O-iPr)(13).

摘要

本文详细描述了杂双金属 Cu/Sm/双核席夫碱配合物促进的催化对映选择性硝基曼尼希反应的全细节,展示了杂双金属过渡金属/稀土金属双功能催化的有效性。用非手性酚添加剂制备的第一代 Cu(OAc) 2 /Sm(O-iPr) 3 /Schiff 碱 1a = 1:1:1 的体系在实现对映选择性催化不对称硝基曼尼希反应方面取得了部分成功。第一代体系的底物范围和局限性仍然存在问题。在对 Sm(O-iPr) 3 制备的催化剂进行机理研究后,我们重新优化了催化剂的制备方法,与 Sm(O-iPr) 3 相比,由 Sm(5)O(O-iPr) 13 衍生的催化剂表现出更广泛的底物通用性以及更高的反应性和立体选择性。与 Sm(O-iPr) 3 相比,具有 Sm(5)O(O-iPr) 13 的最佳体系适用于各种芳香族、杂芳香族和可异构化的脂肪族 N-Boc 亚胺,产物的对映选择性 ee 值为 66-99%,syn/anti > 20:1-13:1。还使用 Sm(5)O(O-iPr) 13 衍生的催化剂证明了 nemonapride 的催化不对称合成。

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