Sibi Mukund P, Stanley Levi M, Nie Xiaoping, Venkatraman Lakshmanan, Liu Mei, Jasperse Craig P
Department of Chemistry and Molecular Biology, North Dakota State University, Fargo, North Dakota 58105, USA.
J Am Chem Soc. 2007 Jan 17;129(2):395-405. doi: 10.1021/ja066425o.
We have evaluated the role of achiral pyrazolidinone templates in conjunction with chiral Lewis acids in room temperature, enantioselective Diels-Alder cycloadditions. The role of the fluxional N(1) substituent was examined, with the bulky 1-naphthylmethyl group providing enantioselectivities up to 99% ee, while templates with smaller fluxional groups gave lower selectivities. High selectivities were also observed in reactions of 7d with chiral Lewis acids derived from relatively small chiral ligands, suggesting the pyrazolidinone templates are capable of relaying stereochemical information from the ligand to the reaction center. Lewis acids capable of adapting square planar geometries, such as Cu(OTf)2, Cu(ClO4)2, and Pd(ClO4)2, were found to be particularly effective at providing high selectivities. Additionally, substitution at the C-5 position of the pyrazolidinone templates has been shown to be critical for optimal selectivity. Reactions of the optimal pyrazolidinone appended with a number of common dienophiles and various dienes demonstrate the utility of this achiral template. Furthermore, catalytic loadings could be lowered to 2.5 mol % with essentially no loss in selectivity. Pi-Pi interactions were evaluated as a means to explain the unusually high selectivity observed at room temperature. Finally, non-C2-symmetric ligands were employed as a test to determine if chiral relay was operative.
我们评估了非手性吡唑烷酮模板与手性路易斯酸在室温下对映选择性狄尔斯-阿尔德环加成反应中的作用。研究了可移动的N(1)取代基的作用,体积较大的1-萘甲基提供高达99% ee的对映选择性,而具有较小可移动基团的模板选择性较低。在7d与由相对较小的手性配体衍生的手性路易斯酸的反应中也观察到了高选择性,这表明吡唑烷酮模板能够将立体化学信息从配体传递到反应中心。发现能够采用平面正方形几何结构的路易斯酸,如Cu(OTf)2、Cu(ClO4)2和Pd(ClO4)2,在提供高选择性方面特别有效。此外,已证明吡唑烷酮模板C-5位的取代对于实现最佳选择性至关重要。连接了多种常见亲双烯体和各种双烯的最佳吡唑烷酮的反应证明了这种非手性模板的实用性。此外,催化负载量可降低至2.5 mol%,而选择性基本没有损失。评估了π-π相互作用,以此作为解释在室温下观察到的异常高选择性的一种方法。最后,使用非C2对称配体作为测试,以确定手性传递是否起作用。