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Continuous-Wave Cavity-Enhanced Polarimetry for Optical Rotation Measurement of Chiral Molecules

机译:用于光学旋转测量手性分子的连续波腔增强偏振子

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摘要

Precise optical rotation measurements play an important role in the analysis of chiral molecules in various fields, especially in biological chemistry and pharmacology. In this paper, we demonstrate a new variant of continuous-wave cavity-enhanced polarimetry for detecting the optical activity of two enantiomers of a chiral molecule at 730 nm. It is based on a signal-reversing technique for which the chiral specific rotation is directly determined by the cavity ring-down signal from two counter-propagating beams in a bow-tie cavity. In particular, we ensure reproducible excitation of both modes by broadening the linewidth of a diode laser source by application of a radio frequency perturbation to its injection current. The performance of the polarimeter is demonstrated for the specific rotation of (+)- and (?)-α-pinene in different environments, including the pure vapor, open air, and the liquid phase; the detection precision ranges between 10~(–5) and 10~(–4) degrees per cavity pass depending on the environment. The apparatus is a robust and practical tool for quantifying chirality and can be developed for the entire visible and near-infrared spectral regions.
机译:精确的旋光度测量在手性分子分析的各个领域,尤其是在生物化学和药理学中发挥着重要作用。在本文中,我们展示了一种新的连续波腔增强旋光法,用于检测手性分子的两个对映体在730nm处的光学活性。它基于一种信号反转技术,其手征比旋转直接由蝶形腔中两个反向传播光束的腔衰荡信号决定。特别是,我们通过对半导体激光源的注入电流施加射频微扰来扩大其线宽,从而确保两种模式的重复激发。旋光仪的性能在(+)-和(?)的比旋率下得到了证明-不同环境下的α-蒎烯,包括纯蒸汽、露天和液相;根据环境的不同,每个腔体的检测精度在10~(-5)到10~(-4)度之间。该仪器是一种用于定量手性的可靠实用工具,可用于整个可见光和近红外光谱区域。

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  • 来源
    《Analytical chemistry》 |2021年第13期|共9页
  • 作者单位

    Department of Chemistry Physical and Theoretical Chemistry Laboratory University of Oxford;

    Department of Chemistry Physical and Theoretical Chemistry Laboratory University of Oxford;

    Department of Chemistry Physical and Theoretical Chemistry Laboratory University of Oxford;

    Department of Chemistry Physical and Theoretical Chemistry Laboratory University of Oxford;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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