Shitama Hiroaki, Katsuki Tsutomu
Department of Chemistry, Faculty of Science, Graduate School, Kyushu University, 33, 6-10-1, Hakozaki, Higashi-ku, Fukuoka 812-8581, Japan.
Chemistry. 2007;13(17):4849-58. doi: 10.1002/chem.200601420.
It is known that the rates and stereochemical outcomes of epoxidations and cyclopropanations using a metallosalen (salenH(2): N,N'-bis(salicylidene)ethylene-1,2-diamine) complex as catalyst are affected by a trans effect of the apical ligand of the complex. By taking into consideration this trans effect, we have synthesized optically active pentadentate salen ligands bearing an imidazole or pyridine derivative as the fifth coordinating group, and have prepared the corresponding manganese(III) and cobalt(II) complexes, in which the fifth ligand is expected to intramolecularly coordinate to the metal center and exert a trans effect. Indeed, high enantioselectivity has been achieved in epoxidations using aqueous hydrogen peroxide as the terminal oxidant and in cyclopropanations with these complexes as catalysts. In general, metallosalen-catalyzed reactions have been carried out in the presence of an excess of a donor ligand; however, the present reactions do not need the addition of any extra donor ligand.
已知使用金属双水杨醛乙二胺(salenH₂:N,N'-双(水杨醛亚甲基)乙二胺)配合物作为催化剂进行环氧化和环丙烷化反应的速率及立体化学结果会受到该配合物顶端配体的反位效应影响。考虑到这种反位效应,我们合成了带有咪唑或吡啶衍生物作为第五个配位基团的旋光性五齿双水杨醛乙二胺配体,并制备了相应的锰(III)和钴(II)配合物,其中第五个配体有望与金属中心进行分子内配位并发挥反位效应。实际上,在以过氧化氢水溶液作为终端氧化剂的环氧化反应以及以这些配合物作为催化剂的环丙烷化反应中均实现了高对映选择性。通常,金属双水杨醛乙二胺催化的反应是在过量供体配体存在的情况下进行的;然而,目前的反应无需添加任何额外的供体配体。