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通过动力学去质子化和膦硫醚的动态热力学拆分合成 P-手性化合物:使用(-)-藜芦碱产生相反诱导效应。

Synthesis of P-stereogenic compounds via kinetic deprotonation and dynamic thermodynamic resolution of phosphine sulfides: opposite sense of induction using (-)-sparteine.

机构信息

Department of Chemistry, University of York, Heslington, York YO10 5DD, UK.

出版信息

J Am Chem Soc. 2010 Oct 6;132(39):13922-7. doi: 10.1021/ja1060966.

Abstract

A systematic study of the asymmetric deprotonation of a dimethyl-substituted phosphine sulfide using organolithium bases in the presence of (-)-sparteine has been carried out. Use of nBuLi and (-)-sparteine in Et(2)O at -78 °C gave trapped adducts in ∼88:12 er via a kinetically controlled process that was successfully predicted using a computational approach at the B3LYP/6-31+G(d) level. This initial kinetic enantioselectivity could be enhanced up to 97:3 er by trapping the lithiated intermediate with a prochiral electrophile (e.g., pivaldehyde or tBuPCl(2)). In addition, it was found that the R(P) and S(P) stereoisomers of the lithiated methylphosphine sulfide could interconvert at temperatures above 0 °C. Such interconversion is unprecedented and differs from the configurational instability of organolithiums that are stereogenic at a lithiated carbon atom. The major, thermodynamically preferred diastereomeric (-)-sparteine-complexed lithated phosphine sulfide was investigated by X-ray crystallography and computational methods at the B3LYP/6-31+G(d) level. Through the interconversion of the R(P) and S(P) stereoisomers of the lithiated methylphosphine sulfide, a novel dynamic thermodynamic resolution of a racemic lithiated phosphine sulfide has been developed. Thus, the phosphine sulfide was lithiated with nBuLi, and then (-)-sparteine was added. After equilibration at 0 °C for 3 h, electrophilic trapping generated an adduct in 81:19 er with the configuration opposite to that obtained under kinetic control. Thus, the methodology provides access to P-stereogenic compounds with the opposite sense of induction using (-)-sparteine as the ligand simply by changing the reaction conditions (kinetic or thermodynamic control).

摘要

已经对在 (-)-)-sparteine 的存在下使用有机锂碱对二甲基取代的膦硫醚进行的不对称去质子化进行了系统研究。在 -78°C 下,在 Et(2)O 中使用 nBuLi 和 (-)-)-sparteine 以约 88:12 er 的比率形成了动力学控制过程的捕获加合物,该过程可以使用 B3LYP/6-31+G(d) 水平的计算方法成功预测。这种初始动力学对映选择性可以通过用手性亲电试剂(例如,频哪醇或 tBuPCl(2))捕获锂化中间体来增强至 97:3 er。此外,发现 R(P)和 S(P)立体异构体的锂化甲基膦硫醚可以在高于 0°C 的温度下相互转化。这种相互转化是前所未有的,与在锂化碳原子处具有手性的有机锂的构型不稳定性不同。通过 X 射线晶体学和 B3LYP/6-31+G(d) 水平的计算方法研究了主要的、热力学上优选的 (-)-)-sparteine 配位的锂化膦硫醚。通过锂化甲基膦硫醚的 R(P)和 S(P)立体异构体的相互转化,开发了一种新的外消旋锂化膦硫醚的动态热力学拆分。因此,用 nBuLi 锂化膦硫醚,然后加入 (-)-)-sparteine。在 0°C 下平衡 3 小时后,亲电捕获生成的加合物具有与动力学控制下获得的构型相反的构型,对映体过量为 81:19 er。因此,该方法通过改变反应条件(动力学或热力学控制),仅使用 (-)-)-sparteine 作为配体即可获得具有相反诱导构象的 P-手性化合物。

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