Department of Chemistry, Indian Institute of Technology Roorkee, 247667, Roorkee, India.
Chem Rec. 2022 Apr;22(4):e202100295. doi: 10.1002/tcr.202100295. Epub 2022 Jan 10.
The de-novo approach of mixing chirally pure reagents or Cu(II)-L-amino acid complexes in the slurry of silica gel for preparing TLC plates was reported from author's laboratory and was successful for separation and isolation of enantiomers. Using high molar absorptivity molecules, e. g., 1,5-difluoro-2,4-dinitrobenzene and cyanuric chloride, more than 38 new chiral derivatizing reagents were synthesized in our laboratory by straightforward nucleophilic substitution with simple chiral auxiliaries. Besides, (S)-naproxen, (S)-ketoprofen, and (S)-levofloxacin were used as chiral platforms. A conceptual approach using both achiral phases in chromatography for enantioseparation was also adopted. H NMR and DFT based software were used to explain structures of non-covalent and covalent diastereomeric pairs and determination of configuration and separation mechanism. The methods can be easily used to determine and control enantiomeric purity with advantages over a variety of commercial chiral phases.
作者所在实验室报道了一种在硅胶浆中混合手性纯试剂或 Cu(II)-L-氨基酸配合物来制备 TLC 板的从头合成方法,该方法成功地用于对映异构体的分离和纯化。作者所在实验室还使用高摩尔吸光系数分子,例如 1,5-二氟-2,4-二硝基苯和三聚氯氰,通过简单的手性辅助物的亲核取代反应,合成了 38 种以上的新型手性衍生化试剂。此外,(S)-萘普生、(S)-酮洛芬和(S)-左氧氟沙星也被用作手性平台。作者还采用了在色谱中使用两种非手性相进行对映体分离的概念性方法。通过使用 H NMR 和基于 DFT 的软件来解释非共价和共价非对映体对的结构,并确定构型和分离机制。这些方法可以很容易地用于确定和控制对映体纯度,并且具有优于各种商业手性相的优势。