Landis Clark R, Clark Thomas P
Department of Chemistry, University of Wisconsin, 1101 University Avenue, Madison, WI 53706, USA.
Proc Natl Acad Sci U S A. 2004 Apr 13;101(15):5428-32. doi: 10.1073/pnas.0307572100. Epub 2004 Feb 25.
Functionalized chiral diazaphospholanes ligate to a variety of transition metals, yielding chiral, catalytically active, metal complexes. Previous work has established that amino acid derivatization of the carboxyl groups of (R,R)-N,N'-phthaloyl-2,3-(2-carboxyphenyl)-phenyl-3,4-diazaphospholane (1) yields phosphines that are excellent ligands for palladium-catalyzed asymmetric allylic alkylation reactions. Alanine functionalization is particularly effective for allylic alkylation of 1,3-dimethylallyl acetate. Standard Merrifield resins and amino acid coupling methods are used to synthesize the bead-attached phosphine having the topology bead-linker-LAla-(R,R)-1-LAla-OMe, as a 1:1 mixture of linkage isomers. Use of this supported phosphine in Pd-catalyzed asymmetric allylic alkylation yields 92% enantiomeric excess, matching prior solution-phase results. A 20-member collection of amino acid-functionalized phosphines on beads with the topology bead-linker-AA(2)-AA(1)-1-AA(1)-AA(2) was synthesized by using parallel solid-state methods and screened for efficacy in allylic alkylation. Resulting enantioselectivities indicate that the AA(1) position has the strongest effect on the reaction. Catalyst activities can vary widely with the nature of the phosphine ligand and the reaction conditions. Meaningful analysis of intrinsic catalytic activities awaits identification of the structure and abundance of the active catalyst.
功能化手性二氮杂磷环戊烷与多种过渡金属配位,生成手性、具有催化活性的金属配合物。先前的工作已证实,对(R,R)-N,N'-邻苯二甲酰基-2,3-(2-羧基苯基)-苯基-3,4-二氮杂磷环戊烷(1)的羧基进行氨基酸衍生化可得到膦,这些膦是钯催化的不对称烯丙基烷基化反应的优良配体。丙氨酸功能化对于乙酸1,3-二甲基烯丙酯的烯丙基烷基化特别有效。使用标准的 Merrifield 树脂和氨基酸偶联方法合成了具有拓扑结构珠-连接体-L-丙氨酸-(R,R)-1-L-丙氨酸-OMe的珠载膦,它是连接异构体的1:1混合物。在钯催化的不对称烯丙基烷基化反应中使用这种负载型膦,对映体过量率可达92%,与之前的溶液相结果相当。通过平行固态方法合成了一个由20种氨基酸功能化的珠载膦组成的集合,其拓扑结构为珠-连接体-AA(2)-AA(1)-[1]-AA(1)-AA(2),并对其在烯丙基烷基化反应中的效果进行了筛选。所得的对映选择性表明,AA(1)位置对反应的影响最强。催化剂活性会因膦配体的性质和反应条件而有很大差异。对内在催化活性进行有意义的分析有待于确定活性催化剂的结构和丰度。