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首页> 外文期刊>The Journal of Organic Chemistry >Rational Design of Aldol Reactions That Proceed via Kinetic Resolution with Switchable Enantioselectivity
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Rational Design of Aldol Reactions That Proceed via Kinetic Resolution with Switchable Enantioselectivity

机译:通过可拆分对映选择性通过动力学拆分进行的羟醛反应的合理设计

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The stereoselectivity of aldol reactions of chiral reactants can be factorized into to three stereocontrol elements:the diastereoface selectivities of the ketone enol(ate) and aldehyde and the relative topicity of the coupling.Application of the multiplicativity rule to these elements leads to the prediction that kinetic resolution (KR) should be possible if all three stereocontrol elements are strongly biased. As a corollary, the enantioselectivity of the kinetic resolution should be switchable by a change in the sense of selectivity of any of the stereocontrol elements. This hypothesis was tested using aldehyde and ketone reactants with high diastereoface selectivities and developing reaction conditions that strongly favor either syn or anti relative topicity. The aldehyde 2 undergoes aldol reactions with near-exclusive Felkin diastereoface selectivity, and hydroxy-protected derivatives of ketone 1 (R ) MOM, Et3Si, or Ac) undergo aldol reactions with high diastereoface selectivity to give 3,5-trans adducts. High levels of anti and syn relative topicity were obtained with dicyclohexylboron enolates and Ti(OiPr)4Li “ate” enolates,respectively. Using these enolates, aldol reactions of (()-2 with (()-1 gave two of the eight possible diastereomeric adducts (3 from a diastereoselective like combination of reactant enantiomers and 4 from a diastereoselective unlike combination) predominantly (>95% of the adducts) in ratios of 0.05-20:1; boron enolates favored the like reaction (3:4, 15-20:1) and Ti “ate” enolates favored the unlike reaction (3:4, 1:10-20). Under these conditions, the ratio of like and unlike products is a measure of the mutual kinetic enantioselection (MKE) and reflects the ratio of the rate constants for the competing like and unlike reactions. For each of the four diastereomers of 1, the reactions with the highest MKEs in favor of the like (3) or unlike products (4) were repeated using highly enantioenriched ketone. These reactions occurred with the expected KR (s ) 10-20) allowing selective access to enantioenriched diastereomers of 3 or 4 from (()-2. These adducts are useful for polypropionate synthesis, and this design strategy for KR should be applicable to related processes.
机译:手性反应物的醛醇缩合反应的立体选择性可以分解为三个立体控制元素:酮烯醇和醛的非对映体选择性以及偶联的相对时空性。乘性规则应用于这些元素导致了预测如果所有三个立体声控制元件都强烈偏置,则动力学分辨率(KR)应该是可能的。因此,动力学分辨率的对映选择性应可通过改变任何立体控制元件的选择性来切换。使用具有高非对映体选择性的醛和酮反应物并开发了强烈支持顺式或反式相对位置性的反应条件,测试了该假设。醛2经历具有几乎排他的Felkin非对映体选择性的醛醇缩合反应,而酮1(R MOM,Et3Si或Ac)的羟基保护衍生物经历非对映体选择性高的醛醇缩合反应,生成3,5-反式加合物。分别用二环己基硼烯醇酸酯和Ti(OiPr)4Li“ ate”烯醇酸酯获得了高水平的抗和同位相对局部性。使用这些烯醇化物,((-2)与((-1)-1)的醛醇缩合反应主要产生8种可能的非对映体加合物中的2种(3种来自非对映体,如反应性对映体组合,4种来自非对映体,不同于对映体组合),> 95%的(加合物)的比例为0.05-20:1;烯醇化硼有助于类似的反应(3:4,15-20:1),钛“酸酯”烯醇化有利于类似反应(3:4,1:10-20)在这些条件下,同类和非同类产品的比率是相互动力学对映异构体(MKE)的量度,反映了竞争类和非同类反应的速率常数的比率。用高度对映体富集的酮重复生成具有最高MKE的类似物(3)或不同产品(4)的反应,并与预期的KR(s)10-20)发生,从而可以从中选择性地获得3或4的对映体富集的非对映体(()-2。这些加合物可用于聚丙烯酸酯的合成,以及此KR设计策略应适用于相关过程。

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