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环氧丙烷双光离化中离子产物的角分布

Angular Distribution of Ion Products in the Double Photoionization of Propylene Oxide.

作者信息

Falcinelli Stefano, Rosi Marzio, Pirani Fernando, Bassi Davide, Alagia Michele, Schio Luca, Richter Robert, Stranges Stefano, Balucani Nadia, Lorent Vincent, Vecchiocattivi Franco

机构信息

Department of Civil and Environmental Engineering, University of Perugia, Perugia, Italy.

Department of Chemistry, Biology and Biotechnologies, University of Perugia, Perugia, Italy.

出版信息

Front Chem. 2019 Sep 11;7:621. doi: 10.3389/fchem.2019.00621. eCollection 2019.

Abstract

A photoelectron-photoion-photoion coincidence technique, using an ion imaging detector and tunable synchrotron radiation in the 18.0-37.0 eV photon energy range, inducing the ejection of molecular valence electrons, has been applied to study the double ionization of the propylene oxide, a simple prototype chiral molecule. The experiment performed at the Elettra Synchrotron Facility (Trieste, Italy) allowed to determine angular distributions for ions produced by the two-body dissociation reactions following the Coulomb explosion of the intermediate (CHO) molecular dication. The analysis of the coincidence spectra recorded at different photon energies was done in order to determine the dependence of the anisotropy parameter on the photon energy for the investigated two-body fragmentation channels. In particular, the reaction leading to + CHO appears to be characterized by an increase of , from ≈ 0.00 up to = 0.59, as the photon energy increases from 29.7 to 37.0 eV, respectively. This new observation confirms that the dissociation channel producing and CHO final ions can occur with two different microscopic mechanisms as already indicated by the bimodality obtained in the kinetic energy released (KER) distributions as a function of the photon energy in a recent study. Energetic considerations suggest that experimental data are compatible with the formation of two different stable isomers of CHO: acetyl and oxiranyl cations. These new experimental data are inherently relevant and are mandatory information for further experimental and theoretical investigations involving oriented chiral molecules and linearly or circularly polarized radiation. This work is in progress in our laboratory.

摘要

一种光电子-光离子-光离子符合技术,使用离子成像探测器和能量范围在18.0 - 37.0 eV的可调谐同步辐射,诱导分子价电子的发射,已被应用于研究环氧丙烷(一种简单的手性分子原型)的双电离。在意大利的埃莱特拉同步辐射装置上进行的实验,能够确定中间体(CHO)分子双阳离子库仑爆炸后双体解离反应产生的离子的角分布。对在不同光子能量下记录的符合光谱进行分析,以确定所研究的双体碎裂通道的各向异性参数对光子能量的依赖性。特别地,导致 + CHO的反应似乎具有这样的特征:随着光子能量分别从29.7 eV增加到37.0 eV, 从 ≈ 0.00增加到 = 0.59。这一新观察结果证实,产生 和CHO最终离子的解离通道可以通过两种不同的微观机制发生,正如最近一项研究中动能释放(KER)分布作为光子能量的函数所呈现的双峰性已经表明的那样。能量方面的考虑表明,实验数据与CHO的两种不同稳定异构体(乙酰阳离子和环氧乙烷基阳离子)的形成是相符的。这些新的实验数据具有内在的相关性,对于涉及取向手性分子以及线偏振或圆偏振辐射的进一步实验和理论研究来说是必不可少的信息。这项工作正在我们实验室进行中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7290/6749015/390ecf3bc754/fchem-07-00621-g0001.jpg

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