Ooi Takashi, Kameda Minoru, Taniguchi Mika, Maruoka Keiji
Department of Chemistry, Graduate School of Science, Kyoto University, Sakyo, Kyoto 606-8502, Japan.
J Am Chem Soc. 2004 Aug 11;126(31):9685-94. doi: 10.1021/ja048865q.
A highly efficient direct asymmetric aldol reaction of a glycinate Schiff base with aldehydes has been achieved under mild organic/aqueous biphasic conditions with excellent stereochemical control, using chiral quaternary ammonium salt 1b as a phase-transfer catalyst. The initially developed reaction conditions, using 2 equiv of aqueous base (1% NaOH (aq)), exhibited inexplicably limited general applicability in terms of aldehyde acceptors. The mechanistic investigation revealed the intervention of an unfavorable yet inevitable retro aldol process involving the chiral catalyst. On the basis of this information, a reliable procedure has been established by use of a catalytic amount of 1% NaOH (aq) and ammonium chloride, which tolerates a wide range of aldehydes to afford the corresponding anti-beta-hydroxy-alpha-amino esters almost exclusively in an essentially optically pure form.
在手性季铵盐1b作为相转移催化剂的情况下,在温和的有机/水两相条件下实现了甘氨酸酯席夫碱与醛的高效直接不对称羟醛反应,并具有出色的立体化学控制。最初开发的反应条件是使用2当量的碱水溶液(1% NaOH (aq)),但就醛受体而言,其普遍适用性表现出令人费解的局限性。机理研究表明,涉及手性催化剂的不利但不可避免的逆羟醛过程会产生干扰。基于此信息,通过使用催化量的1% NaOH (aq)和氯化铵建立了一种可靠的方法,该方法可耐受多种醛,几乎能以基本光学纯的形式专一性地得到相应的反式-β-羟基-α-氨基酯。