Nakano Yuki, Shimizu Satoki, Takeda Chihiro, Sakaguchi Satoshi
Department of Chemistry and Materials Engineering, Faculty of Chemistry, Materials and Bioengineering, Kansai University, Suita, Osaka 564-8680, Japan.
Molecules. 2021 Jun 4;26(11):3404. doi: 10.3390/molecules26113404.
Hydroxyamide-functionalized azolium salt (NHC•HI ) was evaluated for dual enantioselective control in a Cu-catalyzed asymmetric conjugate addition (ACA) reaction. This investigation was based on our previously reported ACA reaction catalyzed using CuOTf combined with NHC•AgI complex . It was revealed that the stereocontrol of the catalytic ACA reaction depended on the order of the addition of the substrates. Additionally, the chiral NHC ligand precursors, substrates, the relationship between the catalyst ee (ee) and product ee (ee), and halogen counter anion were completely evaluated. These results suggested that the catalytic performance of the CuOTf/ system was comparable with that of the CuOTf/ system. Furthermore, to gain knowledge of the Cu species generated using CuOTf and NHC ligand precursor, the reaction of CuOTf with was investigated. Although obtaining the corresponding NHC•CuX species failed, the corresponding NHC•AuCl complex could be synthesized by allowing to react with AuCl•SMe.
对羟基酰胺官能化的唑盐(NHC•HI)在铜催化的不对称共轭加成(ACA)反应中的双重对映选择性控制进行了评估。该研究基于我们之前报道的使用三氟甲磺酸铜与NHC•AgI配合物催化的ACA反应。结果表明,催化ACA反应的立体控制取决于底物添加的顺序。此外,对手性NHC配体前体、底物、催化剂对映体过量(ee)与产物对映体过量(ee)之间的关系以及卤素抗衡阴离子进行了全面评估。这些结果表明,三氟甲磺酸铜/该体系的催化性能与三氟甲磺酸铜/体系相当。此外,为了了解使用三氟甲磺酸铜和NHC配体前体生成的铜物种,研究了三氟甲磺酸铜与的反应。尽管未能获得相应的NHC•CuX物种,但通过使与AuCl•SMe反应可以合成相应的NHC•AuCl配合物。