Xie Jian-Hua, Zhou Qi-Lin
State Key Laboratory and Institute of Elemento-organic Chemistry, Nankai University, Tianjin 300071, China.
Acc Chem Res. 2008 May;41(5):581-93. doi: 10.1021/ar700137z. Epub 2008 Mar 1.
The preparation of chiral compounds in enantiomerically pure form is a challenging goal in modern organic synthesis. The use of chiral metal complex catalysis is a powerful, economically feasible tool for the preparation of optically active organic compounds on both laboratory and industrial scales. In particular, the metals coordinated by one or more chiral phosphorus ligands exhibit amazing enantioselectivity and reactivity. Many chiral phosphorus ligands have been synthesized and used in transition-metal-catalyzed asymmetric reactions in past decades. However, a large number of reactions still lack effective chiral ligands, and the enantioselectivities in many reactions are substrate-dependent. The development of effective chiral phosphorus ligands, especially ligands having novel chiral backbones, is still an important task in the area of asymmetric catalysis. Molecules containing a spirocyclic framework are ubiquitous in nature. The synthesis of molecules with this spiro structure can be traced back to 100 years ago. However, the use of this spirocyclic framework to construct chiral phosphorus ligands is a recent event. This Account outlines the design and synthesis of a new family of chiral spiro phosphorus ligands including spiro diphosphines and spiro monodentate phosphorus ligands with 1,1'-spirobiindane and 9,9'-spirobifluorene backbone and their applications in transition-metal-catalyzed asymmetric hydrogenation and carbon-carbon bond formation reactions. The chiral spiro diphosphine lgands SDP with a 1,1'-spirobiindane backbone and SFDP with a 9,9'-spirobifluorene backbone, and the spiro monophosphorus ligands including phosphoramidites, phosphites, phosphonites, and phospholane with a 1,1'-spirobiindane backbone were synthesized in good yields from enantiomerically pure 1,1'-spirobiindane-7,7'-diol and 9,9'-spirobifluoren-1,1'-diol. The ruthenium complexes of chiral spiro diphosphine ligands proved to be very effective catalysts for asymmetric hydrogenations of ketones, alpha-arylaldehydes and alpha,beta-unsaturated acids. The rhodium complexes of chiral spiro monophosphorus ligands are highly enantioselective for the asymmetric hydrogenations of alpha- and beta-dehydroamino acid derivatives, alpha-arylethenyl acetamides and non- N-acyl enamines. The spiro monophosphorus ligands were demonstrated to be highly efficient for the Rh-catalyzed asymmetric addition of arylboronic acids to aldehydes and N-tosylarylimines, Pd-catalyzed asymmetric allylation of aldehydes with allylic alcohols, Cu-catalyzed asymmetric ring opening reactions with Grignard reagents, and Ni-catalyzed asymmetric hydrovinylation of styrene derivatives with ethylene. The chiral spiro phosphorus ligands show high enantioselectivities for a wide range of transition-metal-catalyzed asymmetric reactions. In most of these transformations, the enantioselectivities of spiro phosphorus ligands are superior to those obtained by using the corresponding phosphorus ligands with other backbones. These results arise from the intriguing chiral inducement of spiro structures of the ligands.
以对映体纯的形式制备手性化合物是现代有机合成中一个具有挑战性的目标。使用手性金属配合物催化是在实验室和工业规模上制备光学活性有机化合物的一种强大且经济可行的工具。特别是,由一个或多个手性磷配体配位的金属表现出惊人的对映选择性和反应活性。在过去几十年中,许多手性磷配体已被合成并用于过渡金属催化的不对称反应。然而,大量反应仍然缺乏有效的手性配体,并且许多反应中的对映选择性取决于底物。开发有效的手性磷配体,特别是具有新型手性骨架的配体,仍然是不对称催化领域的一项重要任务。含有螺环骨架的分子在自然界中普遍存在。具有这种螺环结构的分子的合成可以追溯到100年前。然而,使用这种螺环骨架构建手性磷配体是最近才有的事情。本综述概述了一类新型手性螺环磷配体的设计与合成,包括具有1,1'-螺二茚和9,9'-螺二芴骨架的螺双膦配体和螺单齿磷配体,以及它们在过渡金属催化的不对称氢化反应和碳-碳键形成反应中的应用。具有1,1'-螺二茚骨架的手性螺双膦配体SDP和具有9,9'-螺二芴骨架的SFDP,以及具有1,1'-螺二茚骨架的包括亚磷酰胺、亚磷酸酯、亚膦酸酯和磷杂环戊烷的螺单磷配体,由对映体纯的1,1'-螺二茚-7,7'-二醇和9,9'-螺二芴-1,1'-二醇高产率地合成。手性螺双膦配体的钌配合物被证明是酮、α-芳基醛和α,β-不饱和酸不对称氢化的非常有效的催化剂。手性螺单磷配体的铑配合物对α-和β-脱氢氨基酸衍生物、α-芳基乙烯基乙酰胺和非N-酰基烯胺的不对称氢化具有高度对映选择性。螺单磷配体被证明在铑催化的芳基硼酸与醛和N-对甲苯磺酰基芳基亚胺的不对称加成反应、钯催化的醛与烯丙醇的不对称烯丙基化反应、铜催化的与格氏试剂的不对称开环反应以及镍催化的苯乙烯衍生物与乙烯的不对称氢甲酰化反应中非常有效。手性螺环磷配体对广泛的过渡金属催化的不对称反应表现出高对映选择性。在大多数这些转化中,螺环磷配体的对映选择性优于使用具有其他骨架的相应磷配体所获得的对映选择性。这些结果源于配体螺环结构有趣的手性诱导作用。