Vang Zoua Pa, Sonstrom Reilly E, Scolati Haley N, Clark Joseph R, Pate Brooks H
Department of Chemistry, Marquette University, Milwaukee, Wisconsin, USA.
Department of Chemistry, University of Virginia, Charlottesville, Virginia, USA.
Chirality. 2023 Nov;35(11):856-883. doi: 10.1002/chir.23596. Epub 2023 Jun 5.
Chiral tag molecular rotational resonance (MRR) spectroscopy is used to assign the absolute configuration of molecules that are chiral by virtue of deuterium substitution. Interest in the improved performance of deuterated active pharmaceutical ingredients has led to the development of precision deuteration reactions. These reactions often generate enantioisotopomer reaction products that pose challenges for chiral analysis. Chiral tag rotational spectroscopy uses noncovalent derivatization of the enantioisotopomer to create the diastereomers of the 1:1 molecular complexes of the analyte and a small, chiral molecule. Assignment of the absolute configuration requires high-confidence determinations of the structures of these weakly bound complexes. A general search method, CREST, is used to identify candidate geometries. Subsequent geometry optimization using dispersion corrected density functional theory gives equilibrium geometries with sufficient accuracy to identify the isomers of the chiral tag complexes produced in the pulsed jet expansion used to introduce the sample into the MRR spectrometer. Rotational constant scaling based on the fact that the diastereomers have the same equilibrium geometry gives accurate predictions allowing identification of the homochiral and heterochiral tag complexes and, therefore, assignment of absolute configuration. The method is successfully applied to three oxygenated substrates from enantioselective Cu-catalyzed alkene transfer hydrodeuteration reaction chemistry.
手性标签分子旋转共振(MRR)光谱法用于确定因氘取代而具有手性的分子的绝对构型。对氘代活性药物成分性能提升的关注促使了精确氘代反应的发展。这些反应常常生成对映体同位素反应产物,对手性分析构成挑战。手性标签旋转光谱法利用对映体同位素的非共价衍生化来创建分析物与一个小的手性分子的1:1分子复合物的非对映体。绝对构型的确定需要对这些弱结合复合物的结构进行高可信度的测定。一种通用的搜索方法CREST用于识别候选几何结构。随后使用色散校正密度泛函理论进行几何结构优化,得到具有足够精度的平衡几何结构,以识别在用于将样品引入MRR光谱仪的脉冲喷射膨胀中产生的手性标签复合物的异构体。基于非对映体具有相同平衡几何结构这一事实的转动常数缩放给出了准确的预测,从而能够识别同手性和异手性标签复合物,进而确定绝对构型。该方法成功应用于对映选择性铜催化烯烃转移加氢氘化反应化学中的三种含氧底物。