Institute of Optical Imaging and Sensing, Shenzhen Key Laboratory for Minimal Invasive Medical Technologies, Graduate School at Shenzhen, Tsinghua University, Shenzhen 518055, China.
Department of Physics, Tsinghua University, Beijing 100084, China.
Sensors (Basel). 2018 Nov 6;18(11):3788. doi: 10.3390/s18113788.
We propose a self-referential fast detection scheme for a frequency domain weak measurement system for the detection of enantiomeric impurities in chiral molecules. In a transmissive weak measurement system, the optical rotation (OR) is used to modify the pre-selected polarization state and the post-selection polarization state. We obtained the sum and difference of the optical rotations produced by the sample and the standard by rotating the quarter wave plate in the system. Then, we estimate the ratio of chiral molecules to enantiomeric impurities using the ratio of the central wavelength shifts caused by the addition and subtraction states described above. In this paper, our system has an optical resolution of 1.88 × 10°. At the same time, we completed the detection of the ratio of the two substances in the mixture of L-proline and D-proline in different proportions, which proved that our system can quickly detect the content of enantiomeric impurities in chiral molecules.
我们提出了一种自参考快速检测方案,用于检测手性分子中对映体杂质的频域弱测量系统。在透射弱测量系统中,使用旋光(OR)来修改预选偏振态和后选偏振态。我们通过旋转系统中的四分之一波片获得了样品和标准品产生的旋光之和与差。然后,我们使用上述加和减状态引起的中心波长位移比来估计手性分子与对映体杂质的比例。在本文中,我们的系统具有 1.88×10°的光学分辨率。同时,我们完成了不同比例 L-脯氨酸和 D-脯氨酸混合物中两种物质比例的检测,证明了我们的系统可以快速检测手性分子中对映体杂质的含量。