波谱学杂志

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含氨基酸单元手性脲的对映体识别性能研究

寇新慧*,张玉冰   

  1. 青岛科技大学分析测试中心,山东 青岛266062
  • 收稿日期:2024-12-23 修回日期:2025-01-21 出版日期:2025-01-22 在线发表日期:2025-01-22
  • 通讯作者: 寇新慧 E-mail:kouxinhui@qust.edu.cn

Study on the Enantiomeric Recognition of Chiral Ureas Containing Amino Acid Units

KOU Xinhui*,ZHANG Yubing   

  1. Analytical and Testing Center, Qingdao University of Science and Technology, Qingdao 266042, China
  • Received:2024-12-23 Revised:2025-01-21 Published:2025-01-22 Online:2025-01-22
  • Contact: KOU Xinhui E-mail:kouxinhui@qust.edu.cn

摘要:

手性分子识别对于化学及制药行业至关重要,我们合成了三种含氨基酸结构单元的手性脲(L-Phe-U,L-Ala-U以及L-Val-U),将其作为手性溶剂化试剂,利用NMR技术,对含有不同取代基的手性有机羧酸分子进行对映体识别. 在4-二甲氨基吡啶的辅助作用下,L-Phe-U对不同的有机羧酸都具有一定的手性识别能力,R型和S 型CαH基团1H的化学位移差(ΔΔδ)范围可达2.4 ~ 16 Hz,同时能够准确测定RS-扁桃酸的对映体过量值. 通过比较发现手性溶剂化试剂含有的苯基及底物手性碳中心连接的基团都会影响手性脲的识别能力. 我们利用DOSY实验测定了扁桃酸在不同体系下的扩散系数,对R型和S型对映体进行区分,揭示了其手性识别的动力学变化.

关键词: 核磁共振(NMR), 手性溶剂化试剂, 手性羧酸, 对映体识别, 化学位移差, 对映体过量

Abstract:

Recognition of chiral molecules is very important for the chemical and pharmaceutical industries. Three kinds of urea containing chiral centers (L-Phe-U, L-Ala-U and L-Val-U) were used as chiral solvating agents (CSAs) to identify chiral organic carboxylic acids with different substituents and their chiral anion recognition properties were examined by NMR spectroscopy. In the presence of 4-dimethylaminopyridine (DMAP), the enantiomeric signals of the benzylic C-H protons of mandelic acid were achieved upon mixing with L-Phe-U, the ΔΔδ values of the CαH signals were ranged from 2.4 to 16.0 Hz, and the enantiomer excess (ee) value of rac-mandelic acid (rac-MA) can be determined accurately. It was found that the phenyl group contained in chiral solvating agents and the groups connected to the chiral carbon center of the substrates would affect separation of the enantiomeric signals. In addition, DOSY spectra demonstrate diffusion coefficient of the rac-MA enantiomers are different in the chiral solvating agents, and the dynamics of chiral recognition are revealed.

Key words: Nuclear magnetic resonance (NMR), Chiral solvating agents, Chiral carboxylic acid, Enantiomeric recognition, Chemical shift difference, Enantiomeric excess