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Asymmetric transfer hydrogenation to aromatic and aliphatic ketones catalyzed by ruthenium complexes linked to both faces of beta-cyclodextrin

机译:由与β-环糊精的两面连接的钌络合物催化的不对称转移氢化成芳族和脂族酮

摘要

A novel ATH catalyst comprising of Ru(II) complexes linked to both faces of β-CD is presented. The huge advantage of this system is that it is possible to reduce aromatic as well as notorious difficult aliphatic ketones in good to excellent enantioselectivities (scheme 63). The catalytic reactions were performed in aqueous solution in the presence of 10 mol% catalyst and excess sodium formate.ududInitial studies were performed with ligand 79 carrying non chiral aminoethanol on the primary face of β-CD synthesised in one step from monotosylated β-CD 68. The stereoselection varying from 6% ee (R) to 47% (R) for various aromatic carbonyl compounds was addressed to preorganization of the substrate in the hydrophobic cavity of β-CD such that si addition of the hydride to the carbonyl group is preferred in the reactive complex.udScreening of several chiral amino alcohols revealed that β-CD-SAP 92 bearing relatively little sterically demanding chiral methyl group serves as excellent ligand for the ATH to various aromatic and challenging aliphatic ketones (scheme 64). A drastically increase of enantioselectivities up to 97% ee (S) was observed in a mixture of H2O/DMF 3:1 with moderate to good conversions. The chiral centre in α-position to the hydorxy group at the side chain has a strong influence on the stereo outcome. Furthermore the catalytic system was able to reduce β-ketoesters enantioselectively and diketones regioselectively.ududA number of monosulfonated diamines and α-pycolyl amines were connected to the primary face of β-CD and applied to ATH. Neither of them could improve β-CD-SAP 79 in terms of reactivity and stereoselectivity.ududIn continuing studies amino alcohols were linked in five steps and overall yields up to 20% to the secondary face of β-CD. It was anticipated that the stereo outcome of ATH reactions with such ligands would differ from the one’s observed with ligands modified on the primary face due to a distortion of the hydrophobic cavity of β-CD. This desymmetrization is caused by a conformational change of the modified sugar ring from 4C1 to more stable 1C4. Interestingly enantioselectivities up to 98% (S) were achieved using β-CD-AE-2F 220 carrying non chiral amino ethanol on the secondary face. This is a striking result since asymmetric reactions using β-CD’s as the only chiral unit are rarely exceeding 50% ee.udIn addition to this it was found that methyl amine attached to the secondary face of β-CD act as excellent ligand in ATH reactions. It could be demonstrated that Ru binds to the amino nitrogen and the hydroxyl group at position 2 of the modified sugar unit. Various aromatic and aliphatic ketones were reduced in exquisite yields and enantioselectivities around 90%.
机译:提出了一种新型的ATH催化剂,该催化剂包括与β-CD的两个表面相连的Ru(II)配合物。该系统的巨大优势在于可以将芳族以及难于控制的脂族酮还原为良好至优异的对映选择性(方案63)。催化反应在水溶液中在10 mol%的催化剂和过量的甲酸钠存在下进行。 ud ud最初的研究是在单步合成的β-CD的β-CD主面上合成携带非手性氨基乙醇的配体79 -CD 68.各种芳香族羰基化合物的立体选择在ee(R)到47%(R)之间变化,是为了解决β-CD疏水腔中底物的预组织,从而将氢化物同羰基加成对几种手性氨基醇的筛选显示,带有相对较少的空间要求的手性甲基的β-CD-SAP92可以作为ATH与各种芳族和挑战性脂肪族酮的出色配体(方案64)。在H2O / DMF 3:1的混合物中,中等到良好的转化率,对映选择性急剧增加,达到97%ee(S)。在侧链的hydorxy基团的α-位的手性中心对立体结果有很大影响。此外,该催化体系能够对映选择性地还原β-酮酸酯和区域选择性地还原二酮。 ud ud许多单磺化二胺和α-苯酚胺被连接到β-CD的主表面并被应用于ATH。在反应性和立体选择性方面,它们都不能改善β-CD-SAP79。 ud ud在持续的研究中,氨基醇分五个步骤进行连接,且总产率高达20%到β-CD的次生表面。可以预料,由于β-CD疏水腔的扭曲,与这种配体发生的ATH反应的立体结果将不同于在主面上修饰的配体所观察到的结果。这种不对称性是由修饰的糖环从4C1到更稳定的1C4的构象变化引起的。有趣的是,使用在次表面上带有非手性氨基乙醇的β-CD-AE-2F220可以实现高达98%(S)的对映选择性。这是一个惊人的结果,因为使用β-CD作为唯一手性单元的不对称反应很少超过50%ee。 ud此外,还发现附着在β-CD次表面上的甲胺在ATH中起出色的配体作用反应。可以证明Ru结合在修饰的糖单元的2位的氨基氮和羟基上。各种芳香族和脂肪族酮的产率降低,对映选择性降低约90%。

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    Schlatter Alain;

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  • 年度 2007
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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