Kastner Alexander, Ring Tom, Braun Hendrike, Senftleben Arne, Baumert Thomas
Institut für Physik und CINSaT, Universität Kassel, Heinrich-Plett-Strasse 40, 34132, Kassel, Germany.
Chemphyschem. 2019 Jun 4;20(11):1416-1419. doi: 10.1002/cphc.201900289. Epub 2019 May 9.
Photoelectron circular dichroism (PECD) is a fascinating phenomenon both from a fundamental science aspect but also due to its emerging role as a highly sensitive analytic tool for chiral recognition in the gas phase. PECD has been studied with single-photon as well as multi-photon ionization. The latter has been investigated in the short pulse limit with femtosecond laser pulses, where ionization can be thought of as an instantaneous process. In this contribution, we demonstrate that multi-photon PECD still can be observed when using an ultra-violet nanosecond pulse to ionize chiral showcase fenchone molecules. Compared to femtosecond ionization, the magnitude of PECD is similar, but the lifetime of intermediate molecular states imprints itself in the photoelectron spectra. Being able to use an industrial nanosecond laser to investigate PECD furthermore reduces the technical requirements to apply PECD in analytical chemistry.
光电子圆二色性(PECD)无论是从基础科学的角度来看,还是因其作为气相中手性识别的高灵敏度分析工具所发挥的新兴作用而言,都是一种引人入胜的现象。人们已经利用单光子以及多光子电离对PECD进行了研究。后者已在飞秒激光脉冲的短脉冲极限条件下进行了研究,在这种情况下,电离可被视为一个瞬时过程。在本论文中,我们证明,当使用紫外纳秒脉冲对手性展示分子葑酮进行电离时,仍可观察到多光子PECD。与飞秒电离相比,PECD的强度相似,但中间分子态的寿命在光电子能谱中留下了印记。能够使用工业纳秒激光来研究PECD,进一步降低了在分析化学中应用PECD的技术要求。