Institut des Sciences Moléculaires d'Orsay (ISMO), CNRS, Université Paris-Saclay, F-91405 Orsay, France.
Synchrotron Soleil, L'Orme des Merisiers, St. Aubin BP48, F-91192 Gif sur Yvette, France.
J Phys Chem Lett. 2022 Mar 17;13(10):2313-2320. doi: 10.1021/acs.jpclett.2c00074. Epub 2022 Mar 4.
Chirality plays a fundamental role in the molecular recognition processes. Molecular flexibility is also crucial in molecular recognition, allowing the interacting molecules to adjust their structures and hence optimize the interaction. Methods probing simultaneously chirality and molecular conformation are therefore crucially needed. Taking advantage of a possible control in the gas phase of the conformational distribution between the equatorial and axial conformers resulting from a ring inversion in jet-cooled 1-indanol, we demonstrate here the sensitivity of valence-shell photoelectron circular dichroism (PECD) to both chirality and subtle conformational changes, in a case where the photoelectron spectra of the two conformers are identical. For the highest occupied orbital, we observe a dramatic inversion of the PECD-induced photoelectron asymmetries, while the photoionization cross-section and usual anisotropy (β) parameter are completely insensitive to conformational isomerism. Such a sensitivity is a major asset for the ongoing developments of PECD-based techniques as a sensitive chiral (bio)chemical analytical tool in the gas phase.
手性在分子识别过程中起着基本作用。分子柔性在分子识别中也至关重要,允许相互作用的分子调整其结构,从而优化相互作用。因此,迫切需要同时探测手性和分子构象的方法。利用在喷射冷却的 1-吲哚醇中可能在手性反转时控制环翻转产生的轴向和赤道构象之间的构象分布的气相中的优势,我们在这里展示了价层光电子圆二色性(PECD)对构象变化的敏感性手性和细微的,在两种构象的光电子光谱相同的情况下。对于最高占据轨道,我们观察到 PECD 诱导的光电子不对称性的剧烈反转,而光致电离截面和通常的各向异性(β)参数对构象异构完全不敏感。这种敏感性在手相中作为灵敏的手性(生物)化学分析工具,为基于 PECD 的技术的持续发展提供了重要的资产。