Yıldız Tülay, Hasdemir Belma, Yaşa Hasniye, Başpınar Küçük Hatice
Department of Chemistry, Organic Chemistry Division, Istanbul University-Cerrahpaşa, Istanbul, Avcilar 34320, Turkey.
ACS Omega. 2024 Mar 8;9(11):12657-12664. doi: 10.1021/acsomega.3c07948. eCollection 2024 Mar 19.
Chiral 1,3-diols are highly valuable molecules used in industries such as pharmaceuticals, cosmetics, and agriculture. Therefore, in this study, a new strategy was developed to synthesize enantiomerically pure (>99% ) 1,3-diols. New chiral 1,3-diols () with high enantiomeric purity were synthesized from aldol products chiral 1,3-keto alcohols (), which are aldol products with different structures. Chiral 1,3-keto alcohols () were synthesized by a new asymmetric aldol method in the first step. This method was developed using a new proline-derived organocatalyst () and Cu(OTf) as an additive in DMSO-HO for the first time. Almost >99% was obtained using our developed aldol procedure. In the second step, original chiral diols () of high enantiomeric purity were obtained by asymmetric reduction of chiral keto alcohols with chiral oxazaborolidine reagents. In this way, a two-step asymmetric reaction was developed for chiral 1,3-diol enantiomers with high enantiomeric purity. The structures of all the original chiral compounds obtained were elucidated by infrared and nuclear magnetic resonance spectroscopy, mass spectrometry, and elemental analysis methods. Their enantiomeric excesses were determined by the chiral high-performance liquid chromatography method. Both keto alcohols and their corresponding chiral diols synthesized can be used as chiral starting materials and chiral source materials or intermediates in the synthesis of many biologically active molecules, or they can be used as chiral ligands in asymmetric synthesis, serving as organocatalysts.
手性1,3 - 二醇是用于制药、化妆品和农业等行业的高价值分子。因此,在本研究中,开发了一种新策略来合成对映体纯的(>99%)1,3 - 二醇。从醛醇产物手性1,3 - 酮醇()合成了具有高对映体纯度的新手性1,3 - 二醇(),手性1,3 - 酮醇()是具有不同结构的醛醇产物。第一步通过一种新的不对称羟醛缩合方法合成手性1,3 - 酮醇()。该方法首次使用一种新的脯氨酸衍生的有机催化剂()和Cu(OTf)作为添加剂在DMSO - HO中进行。使用我们开发的羟醛缩合程序几乎可获得>99%的(产率)。第二步,通过用手性恶唑硼烷试剂对手性酮醇进行不对称还原,得到了高对映体纯度的原始手性二醇()。通过这种方式,开发了一种用于合成具有高对映体纯度的手性1,3 - 二醇对映体的两步不对称反应。通过红外光谱、核磁共振光谱、质谱和元素分析方法对所获得的所有原始手性化合物的结构进行了阐明。它们的对映体过量通过手性高效液相色谱法测定。合成的酮醇及其相应的手性二醇均可作为手性起始原料、手性源材料或中间体用于合成许多生物活性分子,或者它们可作为不对称合成中的手性配体,用作有机催化剂。