Facultad de Ciencias Químicas , Universidad de Salamanca , Plaza de los Caídos 1-5 , Salamanca 37008 , Spain.
Chemistry Research Laboratory , University of Oxford , 12 Mansfield Road , Oxford OX1 3TA , United Kingdom.
J Am Chem Soc. 2018 Apr 25;140(16):5412-5420. doi: 10.1021/jacs.7b13678. Epub 2018 Apr 9.
The acetylacetone-benzaldimine Mannich reaction catalyzed by Mg(II) and Ca(II) salts of chiral phosphoric acids (CPA) has been investigated computationally by QM/MM methods. Enantioselectivity in this reaction is both larger than and in the opposite sense to that observed for the same reaction catalyzed by the protic CPA catalyst alone. We present a mechanistic model from which the characteristic differences between these metal and metal-free catalysts, which can coexist in the same reaction mixture, can be understood. Alkaline earth salts with chiral phosphate counterions are found to be more catalytically active than the protic form, and the Ca(II) and Mg(II) CPA salts react via different mechanisms, with a higher coordination number favored by calcium over magnesium. In the well-ordered chiral cavities around these metal centers, asymmetric induction arises from the steric interaction with the imine protecting group in the unfavorable pathway, with both substrates adopting well-defined conformations. These mechanistic models have allowed us to rationalize the stereochemical outcome across a range of bimolecular reactions promoted by divalent metal phosphates formed with different CPAs.
手性磷酸镁(II)和钙(II)盐催化的乙酰丙酮-苯亚甲基曼尼希反应的量子力学/分子力学方法计算研究。与单独由质子化 CPA 催化剂催化的相同反应相比,该反应的对映选择性更大且方向相反。我们提出了一种机理模型,可以理解这些金属和无金属催化剂之间的特征差异,它们可以共存于同一反应混合物中。具有手性磷酸抗衡离子的碱土金属盐比质子形式具有更高的催化活性,并且 Ca(II)和 Mg(II)CPA 盐通过不同的机制反应,钙比镁更有利于高配位数。在手性金属中心周围的有序手性腔中,不对称诱导来自与不利途径中亚胺保护基团的空间相互作用,两个底物都采用明确定义的构象。这些机理模型使我们能够合理化一系列由不同 CPAs 形成的二价金属磷酸盐促进的双分子反应的立体化学结果。