Graduate School of Pharmaceutical Sciences, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo, 113-0033, Japan.
J Am Chem Soc. 2009 Oct 21;131(41):14990-9. doi: 10.1021/ja9052653.
Full details of a catalytic asymmetric amination with a lanthanum/amide-based ligand catalyst system are described. A catalyst comprising La(NO(3))(3)*6H(2)O, (R)-3a and H-d-Val-O(t)Bu was identified to promote the catalytic asymmetric amination of nonprotected succinimide derivative 1 with as little as 1 mol % catalyst loading. Mechanistic studies by various spectroscopic analyses and several control and kinetic experiments suggested that the catalyst components were in equilibrium between the associated and dissociated forms, and that the reaction likely proceeded through a La(NO(3))(3)*6H(2)O/(R)-3a/H-d-Val-O(t)Bu ternary complex. This catalyst system was also effective for asymmetric amination of N-nonsubstituted alpha-alkoxycarbonyl amides 7, hitherto unprecedented substrates in asymmetric catalysis, probably due to their attenuated reactivity and difficult stereocontrol, affording the amination products in up to >99% yield and >99% ee. The high catalytic performance and enantiocontrol of the reaction with highly coordinative substrates were achieved by the activation/recognition of the substrates exerted by coordination to lanthanum and hydrogen bonding cooperatively in the transition state.
详细描述了一种使用镧/酰胺基配体催化剂体系的催化不对称胺化反应。确定由 La(NO(3))(3)*6H(2)O、(R)-3a 和 H-d-Val-O(t)Bu 组成的催化剂以低至 1 mol%的催化剂负载量促进了非保护琥珀酰亚胺衍生物 1 的催化不对称胺化。通过各种光谱分析和几种对照实验和动力学实验进行的机理研究表明,催化剂组分在缔合和离解形式之间处于平衡状态,反应可能通过 La(NO(3))(3)*6H(2)O/(R)-3a/H-d-Val-O(t)Bu 三元络合物进行。该催化剂体系还可有效用于不对称胺化 N-未取代的α-烷氧基羰基酰胺 7,这是不对称催化中前所未有的底物,可能是由于其反应性减弱和立体控制困难,以高达>99%的产率和>99%的对映选择性得到了胺化产物。通过与镧的配位和氢键协同作用在过渡态中对高配位底物的激活/识别,实现了对反应的高催化性能和对映选择性控制。