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Highly Selective Asymmetric Rh-Catalyzed Hydroformylation of Heterocyclic Olefins

机译:杂环烯烃的高选择性不对称Rh催化加氢甲酰化

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摘要

A small family of new chiral hybrid, diphos-phorus ligands, consisting of phosphine-phosphoramidites L1 and L2 and phosphine-phosphonites L3a-c, was synthesized for the application in Rh-catalyzed asymmetric hydroformylation of heterocyclic olefins. High-pressure (HP)-NMR and HP-IR spectroscopy under 5-10 bar of syngas has been employed to characterize the corresponding catalyst resting state with each ligand. Indole-based ligands LI and L2 led to selective ea coordination, while the xanthene derived system L3c gave predominant ee coordination. Application of the small bite-angle ligands LI and L2 in the highly selective asymmetric hydroformylation (AHF) of the challenging substrate 2,3-dihydrofuran (1) yielded the 2-carbaldehyde (3) as the major regioisomer in up to 68% yield (with ligand L2) along with good ee's of up to 62%. This is the first example in which the asymmetric hydroformylation of 1 is both regio- and enantioselective for isomer 3. Interestingly, use of ligand L3c in the same reaction completely changed the regioselectivity to 3-carbaldehyde (4) with a remarkably high enantioselectivity of 91%. Ligand L3c also performs very well in the Rh-catalyzed asymmetric hydroformylation of other heterocyclic olefins. Highly enantioselective conversion of the notoriously difficult substrate 2,5-dihydrofuran (2) is achieved using the same catalyst, with up to 91% ee, concomitant with complete regioselectivity to the 3-carbaldehyde product (4) under mild reaction conditions. Interestingly, the Rh-catalyst derived from L3c is thus able to produce both enantiomers of 3-carbaldehyde 4, simply by changing the substrate from 1 to 2. Furthermore, 85% ee was obtained in the hydroformylation of N-acetyl-3-pyrroline (5) with exceptionally high regioselectivities for 3-carbaldehyde 8Ac (>99%). Similarly, an ee of 86% for derivative 8Boc was accomplished using the same catalyst system in the AHF of N-(tert-butoxycarbonyl)-3-pyrroline (6). These results represent the highest ee's reported to date in the AHF of dihydrofurans (1, 2) and 3-pyrrolines (5, 6).
机译:合成了一小部分新的手性杂化双膦配体,其由膦-亚磷酰胺L1和L2和膦-膦L3a-c组成,可用于Rh催化的杂环烯烃不对称加氢甲酰化反应中。在5-10 bar合成气下的高压(HP)-NMR和HP-IR光谱已用于表征每种配体的相应催化剂静止状态。基于吲哚的配体L1和L2导致选择性的ea配位,而由x吨衍生的系统L3c给出了主要的ee配位。在具有挑战性的底物2,3-二氢呋喃(1)的高选择性不对称加氢甲酰化(AHF)中应用小咬角配体L1和L2产生了2-甲醛(3)作为主要的区域异构体,产率高达68% (含配体L2)以及高达62%的良好ee。这是第一个实例,其中1的不对称加氢甲酰基化对异构体3既具有区域选择性,也具有对映选择性。有趣的是,在同一反应中使用配体L3c完全改变了对3-甲醛的区域选择性(4),对映选择性非常高,为91 %。配体L3c在Rh催化的其他杂环烯烃的不对称加氢甲酰化反应中也表现出色。使用相同的催化剂(高达91%ee),同时在温和的反应条件下,对3-甲醛产物(4)具有完全的区域选择性,从而实现了极为困难的底物2,5-二氢呋喃(2)的高度对映选择性转化。有趣的是,衍生自L3c的Rh催化剂因此能够简单地将底物从1变为2,从而生成3-甲醛4的两种对映体。此外,在N-乙酰基-3-吡咯啉的加氢甲酰化反应中获得了85%ee (5)对3-甲醛8Ac(> 99%)具有极高的区域选择性。类似地,在N-(叔丁氧羰基羰基)-3-吡咯啉(6)的AHF中使用相同的催化剂体系,得到的衍生物8Boc的ee为86%。这些结果代表了迄今为止在二氢呋喃(1、2)和3-吡咯啉(5、6)的AHF中报告的最高ee。

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  • 来源
    《Journal of the American Chemical Society》 |2012年第15期|p.6607-6616|共10页
  • 作者单位

    Supramolecular and Homogeneous Catalysis, van 't Hoff Institute for Molecular Sciences, University of Amsterdam, Science Park 904, 1098 XH, Amsterdam, The Netherlands,Dutch Polymer Institute, PO Box 902, 5600 AX, Eindhoven, The Netherlands;

    Dutch Polymer Institute, PO Box 902, 5600 AX, Eindhoven, The Netherlands;

    Dutch Polymer Institute, PO Box 902, 5600 AX, Eindhoven, The Netherlands;

    Dutch Polymer Institute, PO Box 902, 5600 AX, Eindhoven, The Netherlands;

    Supramolecular and Homogeneous Catalysis, van 't Hoff Institute for Molecular Sciences, University of Amsterdam, Science Park 904, 1098 XH, Amsterdam, The Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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