Department of Physics, Tsinghua University, Beijing 100084, China; Shenzhen Key Laboratory for Minimal Invasive Medical Technologies, Institute of Optical imaging and Sensing, Graduate School at Shenzhen, Tsinghua University, Shenzhen 518055, China.
Department of Physics, Tsinghua University, Beijing 100084, China; Shenzhen Key Laboratory for Minimal Invasive Medical Technologies, Institute of Optical imaging and Sensing, Graduate School at Shenzhen, Tsinghua University, Shenzhen 518055, China.
Biosens Bioelectron. 2018 Jul 1;110:103-109. doi: 10.1016/j.bios.2018.03.033. Epub 2018 Mar 16.
A new chiral sensor based on weak measurement to accurately measure the optical rotation (OR) has been developed for the estimation of a trace amount of chiral molecule. With the principle of optical weak measurement in frequency domain, the central wavelength shift of output spectra is quantitatively relative to the angle of preselected polarization. Hence, a chiral molecule (e.g., L-amino acid, or D-amino acid) can be enantioselectively determined by modifying the preselection angle with the OR, which will cause the rotation of a polarization plane. The concentration of the chiral sample, corresponding to its optical activity, is quantitatively analyzed with the central wavelength shift of output spectra, which can be collected in real time. Immune to the refractive index change, the proposed chiral sensor is valid in complicated measuring circumstance. The detections of Proline enantiomer concentration in different solvents were implemented. The results demonstrated that weak measurement acted as a reliable method to chiral recognition of Proline enantiomers in diverse circumstance with the merits of high precision and good robustness. In addition, this real-time monitoring approach plays a crucial part in asymmetric synthesis and biological systems.
一种新的基于弱测量的手性传感器已被开发出来,用于精确测量旋光度(OR),以估计痕量手性分子。利用频域光学弱测量原理,输出光谱的中心波长位移与预选偏振角定量相关。因此,通过改变预选择角与 OR 的关系,可以选择性地确定手性分子(例如 L-氨基酸或 D-氨基酸),这将导致偏振平面的旋转。手性样品的浓度与光学活性相对应,通过输出光谱的中心波长位移进行定量分析,该位移可以实时采集。该手性传感器不受折射率变化的影响,在复杂的测量环境中仍然有效。在不同的溶剂中实现了脯氨酸对映体浓度的检测。结果表明,弱测量在手性脯氨酸对映体的识别中具有高精度和良好的鲁棒性。此外,这种实时监测方法在手性合成和生物系统中起着至关重要的作用。