Department of Chemistry, Faculty of Science, Hokkaido University, Sapporo 060-0810 (Japan), Fax: (+81) 11-706-3749.
Chemistry. 2013 Sep 27;19(40):13547-53. doi: 10.1002/chem.201301280. Epub 2013 Aug 16.
Catalyst-substrate hydrogen bonds in artificial catalysts usually occur in aprotic solvents, but not in protic solvents, in contrast to enzymatic catalysis. We report a case in which ligand-substrate hydrogen-bonding interactions cooperate with a transition-metal center in alcoholic solvents for enantioselective catalysis. Copper(I) complexes with prolinol-based hydroxy amino phosphane chiral ligands catalytically promoted the direct alkynylation of aldehydes with terminal alkynes in alcoholic solvents to afford nonracemic secondary propargylic alcohols with high enantioselectivities. Quantum-mechanical calculations of enantiodiscriminating transition states show the occurrence of a nonclassical sp(3)-C-H···O hydrogen bond as a secondary interaction between the ligand and substrate, which results in highly directional catalyst-substrate two-point hydrogen bonding.
在人工催化剂中,催化剂-底物氢键通常发生在非质子溶剂中,而不是在质子溶剂中,这与酶催化形成对比。我们报告了一个在醇溶剂中,配体-底物氢键相互作用与过渡金属中心协同作用用于对映选择性催化的案例。具有脯氨醇基羟氨基膦手性配体的铜(I)配合物催化促进了醛与末端炔烃在醇溶剂中的直接炔基化反应,以高对映选择性得到非外消旋的仲丙炔醇。对映选择性过渡态的量子力学计算表明,非经典的 sp(3)-C-H···O 氢键作为配体和底物之间的二级相互作用的发生,导致高度定向的催化剂-底物两点氢键。