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Attrition-Enhanced Deracemization and Absolute Asymmetric Synthesis of Flavanones from Prochiral Precursors

机译:从促幼儿前体的黄烷酮增强增强增强的膨胀和绝对不对称合成

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摘要

Seven racemic 5,7-dimethoxyflavanones afforded conglomerate crystals upon recrystallization from a solvent. Three methodologies were investigated to achieve asymmetric transformation based on dynamic crystallization of the chiral conglomerate system. The first was chiral symmetry breaking of racemic flavanones by attrition-enhanced deracemization. Continuous suspension of racemic flavanones in a small amount of propanol in the presence of a base (1,8-diazabicyclo[5.4.0]undec-7-ene (DBU)) and glass beads promoted chiral symmetry breaking and converted the flavanones to crystals of (+)- or (-)-enantiomers with 78 to 99% ee. The second method involved cyclization of the intermediate aldol product to give optically active flavanone with 90% ee involving a reversible oxa-Michael addition reaction with attrition-enhanced deracemization. The third was a reaction starting from prochiral 2-hydroxy-4,6-dimethoxyacetophenone and 2-naphthaldehyde under basic conditions, which gave the corresponding flavanone in 89% ee.
机译:七个外消旋5,7-二甲氧基氟萘酮,得到了从溶剂中重结晶时得到的浓缩晶体。研究了三种方法,实现了基于手性康柏制度的动态结晶的不对称转化。首先是通过磨损增强的破坏性化的外消旋黄芪的手性对称性。在碱存在下连续悬浮在少量丙醇中的少量丙醇(1,8-二氮杂双环[5.4.0] UNDEC-7-ENE(DBU))和玻璃珠促进手性对称性和转化为晶体的黄烷酮(+) - 或( - ) - 具有78至99%EE的对映体。第二种方法涉及中间体醛醇产物的环化,以具有90%EE的光学活性黄酮,涉及可逆的Oxa-Michael加法反应与磨损增强的衰变。第三是在胰腺2-羟基-4,6-二甲氧基酮酮和2-萘醛的基本条件下开始的反应,其在89%EE中得到相应的黄烷酮。

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  • 来源
    《Crystal growth & design》 |2020年第9期|共6页
  • 作者单位

    Chiba Univ Grad Sch Engn Dept Appl Chem &

    Biotechnol Inage Ku Chiba 2638522 Japan;

    Chiba Univ Grad Sch Engn Dept Appl Chem &

    Biotechnol Inage Ku Chiba 2638522 Japan;

    Chiba Univ Grad Sch Engn Dept Appl Chem &

    Biotechnol Inage Ku Chiba 2638522 Japan;

    Chiba Univ Grad Sch Engn Dept Appl Chem &

    Biotechnol Inage Ku Chiba 2638522 Japan;

    Chiba Inst Technol Shibazono Educ Ctr Fac Creat Engn Narashino Chiba 2750023 Japan;

    Chiba Univ Grad Sch Engn Dept Appl Chem &

    Biotechnol Inage Ku Chiba 2638522 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 晶体学;
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