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Design, synthesis and evaluation of chiral nonracemic ligands and catalysts for asymmetric synthesis

机译:手性非外消旋配体和不对称合成催化剂的设计,合成和评价

摘要

The work described in this thesis concerns the design, synthesis and evaluation of new chiral nonracemic ligands and catalysts for use in asymmetric reactions. A series of chiral nonracemic chloroacetals were prepared from 2-chloro-4- methyl-6,7-dihydro-5H-[l]pyrindine-7-one and a variety of C2-symmetric and chiral nonracemic 1,2-ethanediols (R = Me, i-Pr and Ph). These chloroacetals were further elaborated, in a modular fashion, to provide a series of chiral ligands and catalysts. A new class of C2-symmetric 2,2u27-bipyridyl ligands were prepared in one step fiom the chloroacetals via a nickel(0)-mediated homo-coupling reaction. These ligands were then evaluated as chiral directors in copper@)-catalyzed asymmetric cyclopropanation reactions of styrene and diazoesters (up to 44% ee). A chiral pyridine N-oxide and a C2-symmetric 2,2u27-bipyridyl N,Nu27-dioxide were also prepared by direct oxidation of the corresponding pyridine and the 2,2u27-bipyridine, respectively. These chiral N-oxides were evaluated as chiral catalysts in desymmeterization reactions of cis-stilbene oxide (up to 20% ee). A series of pyridylphosphine ligands (P,N-ligands) were subsequently prepared in two steps from the chloroacetals via a Suzuki coupling reaction with orthofluorophenylboronic and on subsequent displacement of the fluoride with the potassium anion of diphenylphosphine. These ligands were then evaluated in palladium-catalyzed asymmetric allylic substitution reactions of racemic 3-acetoxy-l,3-diphenyl-1-propene with dimethyl malonate. Optimization of the reaction conditions resulted in the formation of the alkylated product in excellent yield (91%) and in high enantiomeric excess (90%). A related chiral nonracemic and C2-symmetric 2,2u27-bipyridyl ligand was prepared from 2-chloro-4-methyl-5H-[llpyrindine. This pyrindine was prepared from a common intermediate that was used in the synthesis of the first generation of ligands. The chirality of this second generation ligand was installed by a Sharpless asymmetric dihydroxylation reaction (90% ee). The subsequently elaborated 2,2u27-bipyridyl ligand (enriched to 99% ee) was then evaluated in copper(1)-catalyzed asymmetric cyclopropanation reactions of alkenes and diazoesters. In the case of the reaction of para-fluorostyrene and tert-butyl diazoacetate, the corresponding cyclopropane was formed in good diastereoselectivity (92:8) and in excellent enantioselectivity (99% ee). This ligand was also evaluated in copper(I1)-catalyzed asymmetric Friedel-Crafts alkylation reactions of various substituted indoles (up to 90% ee) and in copper(1)- catalyzed asymmetric allylic oxidation reactions of cyclic alkenes with tert-butyl peroxybenzoate (up to 9 1 % ee).
机译:本文描述的工作涉及用于不对称反应的新型手性非外消旋配体和催化剂的设计,合成和评价。由2-氯-4-甲基-6,7-二氢-5H- [l]吡啶啉-7-one和各种C2对称和手性非外消旋1,2-乙二醇制备一系列手性非外消旋氯缩醛=我,i-Pr和Ph)。这些氯缩醛以模块方式进一步加工,以提供一系列手性配体和催化剂。通过镍(0)介导的均相偶联反应一步一步制备氯缩醛中的一类新型的C2对称的2,2 u27-联吡啶基配体。然后,这些配体在铜和苯乙烯和重氮酸酯(不超过44%ee)的铜催化的不对称环丙烷化反应中作为手性导向剂进行评估。还通过分别直接氧化相应的吡啶和2,2 u27-联吡啶来制备手性吡啶N-氧化物和C2-对称的2,2 u27-联吡啶N,N u27-二氧化物。这些手性N-氧化物被评估为顺式二苯乙烯氧化物(不超过20%ee)的不对称反应中的手性催化剂。随后在两个步骤中,从氯缩醛开始,通过与邻氟苯基硼的Suzuki偶联反应,从氯缩醛中制备了一系列吡啶基膦配体(P,N-配体),随后用二苯基膦的钾阴离子置换了氟化物。然后在外消旋的3-乙酰氧基-1,3-二苯基-1-丙烯与丙二酸二甲酯的钯催化的不对称烯丙基取代反应中评估这些配体。反应条件的优化导致以极好的收率(91%)和高的对映体过量(90%)形成烷基化产物。一种相关的手性非外消旋和C2-对称的2,2 u27-联吡啶配体是由2-氯-4-甲基-5H- [llpyrindine]制备的。该嘧啶是由用于合成第一代配体的通用中间体制备的。第二代配体的手性是通过Sharpless不对称二羟基化反应(90%ee)进行的。随后在铜(1)催化的烯烃和重氮酯的不对称环丙烷化反应中评估随后精制的2,2 u27-联吡啶配体(富集至> 99%ee)。在对氟苯乙烯与重氮乙酸叔丁酯反应的情况下,形成的环丙烷具有良好的非对映选择性(92:8)和优异的对映选择性(99%ee)。还通过铜(I1)催化的各种取代的吲哚的不对称Friedel-Crafts烷基化反应(最高90%ee)以及环烯烃与过氧苯甲酸叔丁酯的环烯烃的铜(1)催化的不对称烯丙基氧化反应(最高9 1%ee)。

著录项

  • 作者

    Lyle Michael P. A.;

  • 作者单位
  • 年度 2005
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  • 原文格式 PDF
  • 正文语种 English
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