首页> 美国卫生研究院文献>Chemical Science >Enantioselective installation of adjacent tertiary benzylic stereocentres using lithiation–borylation–protodeboronation methodology. Application to the synthesis of bifluranol and fluorohexestrol
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Enantioselective installation of adjacent tertiary benzylic stereocentres using lithiation–borylation–protodeboronation methodology. Application to the synthesis of bifluranol and fluorohexestrol

机译:对映选择性安装相邻的叔苄基立体中心使用锂化-硼化-原脱硼方法。在合成双氟酚和氟己醇中的应用

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摘要

1,2-Diaryl ethanes bearing 1,2-stereogenic centres show interesting biological activity but their stereocontrolled synthesis has not been reported forcing a reliance of methods involving diastereomer and enantiomer separation. We have found that this class of molecules can be prepared with very high stereocontrol using lithiation–borylation methodology. The reaction of an enantioenriched benzylic lithiated carbamate with an enantioenriched benzylic secondary pinacol boronic ester gave a tertiary boronic ester with complete diastereo- and enantiocontrol. It was essential to use MgBr2/MeOH after formation of the boronate complex, both to promote the 1,2-migration and to trap any lithiated carbamate/benzylic anion that formed from fragmentation of the ate complex, anions that would otherwise racemise and re-form the boronate complex eroding both er and dr of the product. When the benzylic lithiated carbamate and benzylic secondary pinacol boronic ester were too hindered, boronate complex did not even form. In these cases, it was found that the use of the less hindered neopentyl boronic esters enabled successful homologation to take place even for the most hindered reaction partners, with high stereocontrol and without the need for additives. Protodeboronation of the product boronic esters with TBAF gave the target 1,2-diaryl ethanes bearing 1,2-stereogenic centres. The methodology was applied to the stereocontrolled synthesis of bifluranol and fluorohexestrol in just 7 and 5 steps, respectively.
机译:带有1,2-立体异构中心的1,2-二芳基乙烷显示出有趣的生物活性,但是尚未报道其立体控制的合成迫使依赖非对映异构体和对映异构体分离的方法。我们发现可以使用锂化-硼化方法在非常高的立体控制下制备这类分子。富含对映体的苄基锂化氨基甲酸酯与富含对映体的苄基仲频哪醇硼酸酯的反应得到了具有完全非对映和对映体控制的叔硼酸酯。形成硼酸盐络合物后,必须使用MgBr2 / MeOH,以促进1,2-迁移并捕获由盐酸盐络合物裂解形成的任何锂化氨基甲酸酯/苄基阴离子,否则这些阴离子会消旋并重新分离。形成侵蚀产品er和dr的硼酸盐复合物。当苄基锂化氨基甲酸酯和苄基仲频哪醇硼酸酯太受阻碍时,甚至不会形成硼酸酯络合物。在这些情况下,发现使用受阻较少的新戊基硼酸酯即使对于受阻最严重的反应伙伴也可以成功进行同系物,具有高度的立体控制性,并且不需要添加剂。用TBAF对产物硼酸酯进行脱硼硼烷基硼化,得到目标的带有1,2-立体异构中心的1,2-二芳基乙烷。该方法分别仅用7个步骤和5个步骤即可应用于双氟酚和氟己烯醇的立体控制合成。

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