Comby Antoine, Bond Caoimhe M M, Bloch Etienne, Descamps Dominique, Fabre Baptiste, Petit Stephane, Mairesse Yann, Greenwood Jason B, Blanchet Valerie
CELIA-CNRS-CEA, Université de Bordeaux, Talence, France.
School of Maths and Physics, Queen's University, Belfast, UK.
Chirality. 2020 Oct;32(10):1225-1233. doi: 10.1002/chir.23267. Epub 2020 Jul 22.
In this work, the photoionization of chiral molecules by an elliptically polarized, high repetition rate, femtosecond laser is probed. The resulting 3D photoelectron angular distribution shows a strong forward-backward asymmetry, which is highly dependent not only on the molecular structure but also on the ellipticity of the laser pulse. By continuously varying the laser ellipticity, we can observe molecular and enantiomer changes in real time at a previously unseen speed and precision. The technique allows enantiomeric excess of a pure compound to be measured with a 5% precision within 3 s, and a 10-min acquisition yields a precision of 0.4%. The isomers camphor and fenchone can be easily distinguished, unlike with conventional mass spectrometry. Preliminary results for the pharmaceutically interesting ibuprofen are also given, showing the capability of photoionization as a means of distinguishing larger molecular systems.
在这项工作中,研究了椭圆偏振、高重复率飞秒激光对手性分子的光致电离。由此产生的三维光电子角分布显示出强烈的前后不对称性,这不仅高度依赖于分子结构,还依赖于激光脉冲的椭圆率。通过连续改变激光椭圆率,我们能够以前所未有的速度和精度实时观察分子和对映体的变化。该技术能够在3秒内以5%的精度测量纯化合物的对映体过量,10分钟的采集可产生0.4%的精度。与传统质谱法不同,樟脑和葑酮异构体能够很容易地被区分。还给出了具有药学意义的布洛芬的初步结果,显示了光致电离作为区分较大分子体系的一种手段的能力。