Eberhardt Luc, Armspach Dominique, Harrowfield Jack, Matt Dominique
Laboratoire de Chimie Inorganique Moléculaire, Institut de Chimie, UMR 7177 CNRS-Université Louis Pasteur, 1 rue Blaise Pascal, F-67008, Strasbourg Cedex, France.
Chem Soc Rev. 2008 Apr;37(4):839-64. doi: 10.1039/b714519e. Epub 2008 Feb 18.
In discovering the remarkable catalytic properties of BINOL-derived phosphoramidites (binoP-NR(2)), Dutch researchers recently achieved a long-awaited breakthrough in asymmetric catalysis. For the first time, easily accessible monodentate chiral P(III) ligands turned out to provide high enantioselectivities when used in rhodium-catalysed olefin hydrogenation. The simplest ligand representative of this family is MonoPhos, which can be made straightforwardly from BINOL and hexamethylphosphorous triamide. Since the first publication dealing with such catalysts (J. Am. Chem. Soc., 2000), a variety of binoP-NRR' ligands have been reported in which the amino group bears a functional substituent or a stereogenic centre. This critical review examines the impact of the presence of such a functionality in the amino group on catalytic olefin hydrogenation reactions.
在发现联萘酚衍生的磷酰胺(binoP-NR(2))具有卓越的催化性能后,荷兰研究人员最近在不对称催化领域取得了期待已久的突破。首次发现,易于获取的单齿手性P(III)配体在用于铑催化的烯烃氢化反应时,能提供高对映选择性。该家族中最简单的配体代表是单膦(MonoPhos),它可直接由联萘酚和六甲基磷三酰胺制得。自首次发表关于此类催化剂的文章(《美国化学会志》,2000年)以来,已报道了多种binoP-NRR'配体,其中氨基带有官能取代基或立体中心。这篇批判性综述考察了氨基中此类官能团的存在对催化烯烃氢化反应的影响。