Bian Guangling, Yang Shiwei, Huang Huayin, Zong Hua, Song Ling, Fan Hongjun, Sun Xiaoqiang
The Key Laboratory of Coal to Ethylene Glycol and Its Related Technology , Fujian Institute of Research on the Structure of Matter , Chinese Academy of Sciences , Fuzhou , Fujian 350002 , P. R. China . Email:
The State Key Lab of Molecular Reaction Dynamics , Dalian Institute of Chemical Physics (iCheM) , Chinese Academy of Sciences , Dalian , Liaoning 116023 , P. R. China . Email:
Chem Sci. 2016 Feb 1;7(2):932-938. doi: 10.1039/c5sc03780h. Epub 2015 Oct 20.
Chemical sensors are powerful for the fast recognition of chiral compounds. However, the established sensing systems are less effective for chiral tertiary alcohols. The chiral tertiary alcohol group is an important structural unit in natural products and drug molecules, and its enantioselective recognition represents a significant and challenging task. In this paper, a novel type of chiral bisselenourea sensor was first synthesized and used as a strong hydrogen-bonding donor for highly efficient chiral recognition of a diverse range of tertiary alcohols. The obtained sharply split NMR signals are well-distinguishable with a large (up to 0.415 ppm) chemical shift nonequivalence. The NMR signal of the hydroxyl hydrogen atom was first employed for enantiomeric excess determination of tertiary alcohols, giving accurate results with <2% absolute errors. The 2D NOESY spectra and computational studies suggest that the geometrical differentiation of the formed diastereomeric complexes between the sensor and tertiary alcohols enables the chiral discrimination of the hydroxyl hydrogen signals of the tertiary alcohol in the H NMR spectrum.
化学传感器对于快速识别手性化合物很有效。然而,现有的传感系统对手性叔醇的效果较差。手性叔醇基团是天然产物和药物分子中的重要结构单元,其对映选择性识别是一项重大且具有挑战性的任务。本文首次合成了一种新型手性双硒脲传感器,并将其用作强氢键供体,用于高效手性识别多种叔醇。所获得的尖锐分裂的核磁共振信号具有良好的可区分性,化学位移不等价性很大(高达0.415 ppm)。首次将羟基氢原子的核磁共振信号用于叔醇对映体过量的测定,给出的准确结果绝对误差<2%。二维核Overhauser效应光谱(2D NOESY)和计算研究表明,传感器与叔醇之间形成的非对映体复合物的几何差异能够在手性核磁共振谱中对手性叔醇的羟基氢信号进行手性区分。