Harada Toshiro
Faculty of Molecular Chemistry and Engineering, Kyoto Institute of Technology, Matsugasaki, Sakyo-ku, Kyoto, 606-8585, Japan.
Chem Rec. 2016 Jun;16(3):1256-73. doi: 10.1002/tcr.201500269. Epub 2016 Apr 20.
The catalytic enantioselective carbonyl addition reaction has long attracted the interest of chemists because of its synthetic importance. Although many highly enantioselective reactions have been developed, with few exceptions the reactions are carried out at relatively high catalyst loadings, making them less practical for scale-up applications. In addition, organometallic reagents employed as carbon nucleophiles have been limited to those with relatively low reactivity, such as diorganozincs and arylboronic acids. In an effort to enhance the practicality, a highly active and enantioselective chiral titanium catalyst system was recently developed in our laboratory, enabling the enantioselective carbonyl addition reaction to aldehydes using various organometallic reagents (RM; M = MgX, Li, BY2 , ZnX, AlMe2 ) at lower catalyst loadings (≤5 mol %).
催化对映选择性羰基加成反应因其合成重要性长期以来一直吸引着化学家的关注。尽管已经开发出许多高对映选择性反应,但除了少数例外,这些反应都是在相对较高的催化剂负载量下进行的,这使得它们在放大应用中不太实用。此外,用作碳亲核试剂的有机金属试剂仅限于那些反应活性相对较低的试剂,如二有机锌和芳基硼酸。为了提高实用性,我们实验室最近开发了一种高活性和对映选择性的手性钛催化剂体系,能够在较低的催化剂负载量(≤5 mol%)下使用各种有机金属试剂(RM;M = MgX、Li、BY2、ZnX、AlMe2)对醛进行对映选择性羰基加成反应。