Tuttle Jamison B, Ouellet Stéphane G, MacMillan David W C
Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena, CA 91125, USA.
J Am Chem Soc. 2006 Oct 4;128(39):12662-3. doi: 10.1021/ja0653066.
The first enantioselective organocatalytic transfer hydrogenation of cyclic enones has been accomplished. The use of iminium catalysis has provided a new organocatalytic strategy for the enantioselective reduction of beta,beta-substituted alpha,beta-unsaturated cycloalkenones, to generate beta-stereogenic cyclic ketones. The use of imidazolidinone 4 as the asymmetric catalyst has been found to mediate the hydrogenation of a large class of enone substrates with tert-butyl Hantzsch ester serving as an inexpensive source of hydrogen. The capacity of catalyst 4 to enable enantioselective transfer hydrogenation of cycloalkenones has been extended to five-, six-, and seven-membered ring systems. The sense of asymmetric induction is in complete accord with the stereochemical model first reported in conjunction with the use of catalyst 4 for enantioselective ketone Diels-Alder reactions.
环状烯酮的首例对映选择性有机催化转移氢化反应已经实现。亚胺催化的应用为β,β-二取代的α,β-不饱和环烯酮的对映选择性还原提供了一种新的有机催化策略,以生成β-立体异构的环酮。已发现使用咪唑烷酮4作为不对称催化剂,能以叔丁基汉斯酯作为廉价的氢源,介导一大类烯酮底物的氢化反应。催化剂4实现环烯酮对映选择性转移氢化的能力已扩展至五元、六元和七元环体系。不对称诱导的方向与首次报道的、结合使用催化剂4进行酮的对映选择性狄尔斯-阿尔德反应的立体化学模型完全一致。