Yuan Andi, Steber Sarah E, Xhili Dea, Nelson Eryn, Wolf Christian
Department of Chemistry, Georgetown University, Washington, DC, USA.
Chirality. 2023 Sep;35(9):619-624. doi: 10.1002/chir.23572. Epub 2023 May 2.
Fluorinated oxindoles are frequently used building blocks in asymmetric synthesis and represent an important scaffold found in a variety of biologically relevant compounds. While it is understood that incorporation of fluorine atoms into organic molecules can improve their pharmacological properties, the impact on the configurational stability of chiral organofluorines is still underexplored. In this study, semipreparative HPLC enantioseparations of five oxindoles were carried out, and the resulting enantiomerically enriched solutions were used to investigate base promoted racemization kinetics at room temperature. It was found that incorporation of fluorine at the chiral center increases the configurational stability, while substitutions on the aromatic ring and at the lactam moiety also have significant effects on the rate of racemization, which generally follows reversible first-order reaction kinetics.
氟化氧化吲哚是不对称合成中常用的结构单元,是多种具有生物活性的化合物中的重要骨架。虽然人们知道将氟原子引入有机分子可以改善其药理性质,但氟手性有机化合物的构型稳定性受到的影响仍未得到充分研究。在本研究中,对5种氧化吲哚进行了半制备高效液相色谱对映体拆分,并将得到的对映体富集溶液用于研究室温下碱促进的消旋动力学。结果发现,在手性中心引入氟会增加构型稳定性,而芳环和内酰胺部分的取代对消旋速率也有显著影响,消旋通常遵循可逆的一级反应动力学。