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首页> 外文期刊>ACS catalysis >Asymmetric Hydrogenation of 1-Alkyl and 1-Aryl Vinyl Benzoates: A Broad Scope Procedure for the Highly Enantioselective Synthesis of 1-Substituted Ethyl Benzoates
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Asymmetric Hydrogenation of 1-Alkyl and 1-Aryl Vinyl Benzoates: A Broad Scope Procedure for the Highly Enantioselective Synthesis of 1-Substituted Ethyl Benzoates

机译:1-烷基和1-芳基乙烯基苯甲酸酯的不对称加氢:1-取代的乙基苯甲酸酯的高对映选择性合成的广泛程序

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摘要

The enantioselective hydrogenation of enol esters of formula CH2C(OBz)R with rhodium catalysts based on phosphine-phosphite ligands (P-OP) has been studied. The reaction has a broad scope, and it is suitable for the preparation of products possessing a wide variety of R substituents. For the cases where R is a primary alkyl, high catalyst activity (S/C = 500) and enantioselectivities (95-99% ee) were obtained with a catalyst characterized by an ethane backbone and a PPh2 fragment. In contrast, for R = t-Βu, a catalyst possessing a benzene backbone provided the best results (97% ee). Derivatives with a cycloalkyl R substituent were particularly difficult substrates for this reaction. A broader catalyst screening was required for these substrates, which identified a catalyst possessing a P(m-xylyl)2 fragment as the most appropriate one, affording enantioselectivities between 90 and 95% ee. Outstanding enantioselectivities (99% ee) and high catalyst activity (S/C = 500-1000) were also obtained in the case of substrates bearing a Ph or a fluoroaryl R substituent. In addition, the system is also appropriate for the preparation of other synthetically useful esters as those for R = benzyl, 2-phenylethyl or N-phthalimido alkyl chains. Likewise, the hydrogenation of divinyl dibenzoates proceeded with very high diastero- and enantioselectivity, generating rather low amounts of the meso isomer (3-6%). On the other hand, substrates with Br and MeO substituents at the phenyl benzoate ring, suitable for further functionalization, have also been examined. The results obtained indicate no detrimental effect of these substituents in the hydrogenation. Alternatively, the methodology has been applied to the highly enantioselective synthesis of deuterium isotopomers of 1-octyl benzoate bearing CDH2, CD2H, or CD3 fragments. Finally, as a practical advantage of the present system, it has been observed that the high performance of the catalysts is retained in highly concentrated solutions or even in the neat substrate, minimizing both the amount of solvent added and the volume of the reaction.
机译:研究了基于膦-亚磷酸酯配体(P-OP)的铑催化剂对式CH2 = C(OBz)R的烯醇酯的对映选择性氢化。该反应范围广,适合于制备具有多种R取代基的产物。对于R是伯烷基的情况,使用以乙烷主链和PPh2片段为特征的催化剂可获得高催化剂活性(S / C = 500)和对映选择性(95-99%ee)。相反,对于R =t-Βu,具有苯骨架的催化剂提供了最好的结果(ee为97%)。具有环烷基R取代基的衍生物是该反应特别困难的底物。对于这些底物,需要更广泛的催化剂筛选,其确定具有P(间二甲苯基)2片段的催化剂是最合适的,对映选择性为90-95%ee。在带有Ph或氟代芳基R取代基的底物的情况下,也获得了出色的对映选择性(99%ee)和高催化剂活性(S / C = 500-1000)。另外,该体系也适用于制备其他合成上有用的酯,例如对于R =苄基,2-苯乙基或N-邻苯二甲酰亚胺基烷基链的那些。同样,二乙烯基二苯甲酸酯的氢化以非常高的非对映体和对映体选择性进行,产生相当少量的内消旋异构体(3-6%)。另一方面,还研究了适合于进一步官能化的在苯甲酸苯酯环上具有Br和MeO取代基的底物。获得的结果表明这些取代基在氢化中没有有害作用。或者,该方法已应用于带有CDH2,CD2H或CD3片段的苯甲酸1-辛酯的氘代同位素异构体的高度对映选择性合成。最后,作为本系统的实际优点,已经观察到催化剂的高性能保留在高浓度的溶液中,或者甚至保留在纯净的基质中,使加入的溶剂量和反应体积最小化。

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