Westphal Georg, Wega Johannes, Dissanayake Rasika E A, Schäfer Tim
Georg-August-Universität Göttingen, Institut für Physikalische Chemie, Tammannstr. 6, 37077 Göttingen, Germany.
Plant and Environmental Sciences Laboratory, National Institute of Fundamental Studies, Hantana Road, Kandy, Sri Lanka.
J Chem Phys. 2020 Aug 7;153(5):054707. doi: 10.1063/5.0014917.
Chirality detection of gas-phase molecules at low concentrations is challenging as the molecular number density is usually too low to perform conventional circular dichroism absorption experiments. In recent years, new spectroscopic methods have been developed to detect chirality in the gas phase. In particular, the angular distribution of photoelectrons after multiphoton laser ionization of chiral molecules using circularly polarized light is highly sensitive to the enantiomeric form of the ionized molecule [multiphoton photoelectron circular dichroism (MP-PECD)]. In this paper, we employ the MP-PECD as an analytic tool for chirality detection of the bicyclic monoterpene fenchone desorbing from a Ag(111) crystal. We record velocity-resolved kinetics of fenchone desorption on Ag(111) using pulsed molecular beams with ion imaging techniques. In addition, we measure temperature-programmed desorption spectra of the same system. Both experiments indicate weak physisorption of fenchone on Ag(111). We combine both experimental techniques with enantiomer-specific detection by recording MP-PECD of desorbing molecules using photoelectron imaging spectroscopy. We can clearly assign the enantiomeric form of the desorption product fenchone in sub-monolayer concentration. The experiment demonstrates the combination of MP-PECD with surface science experiments, paving the way for enantiomer-specific detection of surface reaction products on heterogeneous catalysts for asymmetric synthesis.
在低浓度下对气相分子进行手性检测具有挑战性,因为分子数密度通常过低,无法进行传统的圆二色吸收实验。近年来,已开发出新的光谱方法来检测气相中的手性。特别是,使用圆偏振光对手性分子进行多光子激光电离后,光电子的角分布对电离分子的对映体形式高度敏感[多光子光电子圆二色性(MP-PECD)]。在本文中,我们采用MP-PECD作为分析工具,用于检测从Ag(111)晶体解吸的双环单萜葑酮的手性。我们使用脉冲分子束和离子成像技术记录葑酮在Ag(111)上解吸的速度分辨动力学。此外,我们测量了同一系统的程序升温解吸光谱。这两个实验均表明葑酮在Ag(111)上存在弱物理吸附。我们将这两种实验技术与对映体特异性检测相结合,通过光电子成像光谱记录解吸分子的MP-PECD。我们能够明确确定亚单层浓度下解吸产物葑酮的对映体形式。该实验展示了MP-PECD与表面科学实验的结合,为在非均相催化剂上进行不对称合成时对表面反应产物进行对映体特异性检测铺平了道路。