Mikami K, Terada M, Korenaga T, Matsumoto Y, Ueki M, Angelaud R
Department of Chemical Technology Tokyo Institute of Technology Meguro-ku, Tokyo 152-8552 (Japan).
Angew Chem Int Ed Engl. 2000 Oct 16;39(20):3532-3556. doi: 10.1002/1521-3773(20001016)39:20<3532::aid-anie3532>3.0.co;2-l.
While nonracemic catalysts can generate nonracemic products with or without the nonlinear relationship in enantiomeric excesses between catalysts and products, racemic catalysts inherently give only a racemic mixture of chiral products. Asymmetric catalysts, either in nonracemic or racemic form, can be further evolved into highly activated catalysts with association of chiral activators. This asymmetric activation process is particularly useful in racemic catalysis through selective activation of one enantiomer of the racemic catalyst. Recently, a strategy whereby a racemic catalyst is selectively deactivated by a chiral additive has been reported to yield nonracemic products. However, reported herein is an alternative and conceptually opposite strategy in which a chiral activator selectively activates, rather than deactivates, one enantiomer of a racemic chiral catalyst. The advantage of this activation strategy over the deactivation counterpart is that the activated catalyst can produce a greater enantiomeric excess in the products-even with the use of a catalytic amount of activator relative to chiral catalyst-than that attained by the enantiomerically pure catalyst on its own. Therefore, asymmetric activation could provide a general and powerful strategy for not only the use of atropisomeric, racemic ligands but also chirally flexible and proatropisomeric ligands without enantiomeric resolution!
虽然非外消旋催化剂在催化剂与产物之间的对映体过量方面可能存在或不存在非线性关系的情况下都能生成非外消旋产物,但外消旋催化剂本质上只能生成手性产物的外消旋混合物。非外消旋或外消旋形式的不对称催化剂可以通过与手性活化剂结合进一步演变成高活性催化剂。这种不对称活化过程在通过选择性活化外消旋催化剂的一种对映体进行外消旋催化中特别有用。最近,有报道称一种通过手性添加剂选择性使外消旋催化剂失活以产生非外消旋产物的策略。然而,本文报道的是一种替代的、概念上相反的策略,其中手性活化剂选择性地活化而非失活外消旋手性催化剂的一种对映体。这种活化策略相对于失活策略的优势在于,即使相对于手性催化剂使用催化量的活化剂,活化后的催化剂在产物中也能产生比纯对映体催化剂自身所能达到的更高的对映体过量。因此,不对称活化不仅可以为使用轴手性、外消旋配体,还可以为无需对映体拆分的手性柔性和前轴手性配体提供一种通用且强大的策略!