Enantiomeric excess (ee) is an essential indicator of chiral drug purification in the pharmaceutical industry. However, to date the ee determination of unknown concentration enantiomers generally involves two separate techniques for chirality and concentration measurement. Here, a whispering‐gallery mode (WGM) based optofluidic microlaser near exceptional point to achieve the ee determination under unknown concentration with a single technique is proposed. Exceptional point induces the unidirectional WGM lasing, providing the optofluidic microlaser with the novel capability to measure chirality by polarization, in addition to wavelength‐based concentration detection. The dual‐parameters detection of optofluidic microlaser empowers it to achieve ee determination of various unknown enantiomers without additional concentration measurements, a feat that is challenging to accomplish with other methods. Featuring the sensitivity enhancement and miniature structure of the WGM sensors, the obtained chiroptical response of the present approach is ≈30‐fold higher than that of the conventional optical rotation‐based polarimeter, and the reagent consumption is reduced by three orders of magnitude.
展开▼
机译:对映体过量 (ee) 是制药行业手性药物纯化的重要指标。然而,迄今为止,未知浓度对映异构体的 ee 测定通常涉及两种独立的手性和浓度测量技术。在这里,提出了一种基于耳语画廊模式 (WGM) 的光流体微激光器在异常点附近,以使用单一技术实现未知浓度下的 ee 测定。异常点诱导单向 WGM 激光,为光流体微激光器提供了通过偏振测量手性的新功能,以及基于波长的浓度检测。光流体微激光器的双参数检测使其能够在不额外浓度测量的情况下实现各种未知对映异构体的 ee 测定,这是其他方法难以实现的壮举。该方法具有 WGM 传感器的灵敏度增强和微型结构,所获得的手光响应比传统的基于旋光度的旋光仪高 ≈30 倍,试剂消耗量减少了三个数量级。
展开▼