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揭示钠-水团簇中的同素异形体:Na(HO)(n = 2-90)的光电子能谱。

Revealing isomerism in sodium-water clusters: Photoionization spectra of Na(HO) (n = 2-90).

机构信息

Institut für Physikalische Chemie, Universität Göttingen, Tammannstr. 6, D-37077 Göttingen, Germany.

Department of Physical Chemistry, University of Chemistry and Technology Prague, Technická 5, Prague 6, Czech Republic.

出版信息

J Chem Phys. 2017 Jun 28;146(24):244303. doi: 10.1063/1.4986520.

Abstract

Soft ionization of sodium tagged polar clusters is increasingly used as a powerful technique for sizing and characterization of small aerosols with possible application, e.g., in atmospheric chemistry or combustion science. Understanding the structure and photoionization of the sodium doped clusters is critical for such applications. In this work, we report on measurements of photoionization spectra for sodium doped water clusters containing 2-90 water molecules. While most of the previous studies focused on the ionization threshold of the Na(HO) clusters, we provide for the first time full photoionization spectra, including the high-energy region, which are used as reference for a comparison with theory. As reported in previous work, we have seen an initial drop of the appearance ionization energy with cluster size to values of about 3.2 eV for n<5. In the size range from n = 5 to n = 15, broad ion yield curves emerge; for larger clusters, a constant range between signal appearance (∼2.8 eV) and signal saturation (∼4.1 eV) has been observed. The measurements are interpreted with ab initio calculations and ab initio molecular dynamics simulations for selected cluster sizes (n≤ 15). The simulations revealed theory shortfalls when aiming at quantitative agreement but allowed us identifying structural motifs consistent with the observed ionization energy distributions. We found a decrease in the ionization energy with increasing coordination of the Na atom and increasing delocalization of the Na 3s electron cloud. The appearance ionization energy is determined by isomers with fully solvated sodium and a highly delocalized electron cloud, while both fully and incompletely solvated isomers with localized electron clouds can contribute to the high energy part of the photoionization spectrum. Simulations at elevated temperatures show an increased abundance of isomers with low ionization energies, an entropic effect enabling size selective infrared action spectroscopy, based on near threshold photoionization of Na(HO) clusters. In addition, simulations of the sodium pick-up process were carried out to study the gradual formation of the hydrated electron which is the basis of the sodium-tagging sizing.

摘要

钠离子标记的极性团的软电离正越来越多地被用作一种强大的技术,用于对小气溶胶进行尺寸测量和特性分析,其潜在应用领域包括大气化学或燃烧科学等。了解掺杂钠离子的团簇的结构和光电离对于此类应用至关重要。在这项工作中,我们报告了对含有 2-90 个水分子的钠离子掺杂水团簇的光电离光谱的测量结果。虽然之前的大多数研究都集中在 Na(HO)团簇的电离阈值上,但我们首次提供了完整的光电离光谱,包括高能区域,这些光谱被用作与理论进行比较的参考。正如之前的工作所报道的,我们已经看到随着团簇尺寸的增加,Na(HO)n 的出现电离能初始下降到约 3.2 eV。在 n = 5 到 n = 15 的尺寸范围内,出现了宽的离子产额曲线;对于较大的团簇,已经观察到信号出现(约 2.8 eV)和信号饱和(约 4.1 eV)之间的恒定范围。这些测量结果与选定团簇尺寸(n≤15)的从头算计算和从头算分子动力学模拟进行了解释。尽管模拟在定量一致性方面存在理论缺陷,但允许我们识别与观察到的电离能分布一致的结构基元。我们发现,随着 Na 原子配位数的增加和 Na 3s 电子云的离域化程度的增加,电离能降低。出现的电离能取决于完全被溶剂化的钠离子和高度离域的电子云的异构体,而具有局域电子云的完全和不完全溶剂化的异构体都可以为光电离光谱的高能部分做出贡献。在较高温度下的模拟显示出具有低电离能的异构体的丰度增加,这是一种熵效应,使得基于 Na(HO)簇的近阈值光电离的尺寸选择性红外作用光谱成为可能。此外,还进行了钠离子俘获过程的模拟,以研究逐渐形成的水化电子,这是钠离子标记尺寸测量的基础。

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