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利用光电离质谱和电子结构计算探究离子化多环芳烃-水团簇中的溶剂化作用和反应活性。

Probing solvation and reactivity in ionized polycyclic aromatic hydrocarbon-water clusters with photoionization mass spectrometry and electronic structure calculations.

作者信息

Xu Bo, Stein Tamar, Ablikim Utuq, Jiang Ling, Hendrix Josie, Head-Gordon Martin, Ahmed Musahid

机构信息

Chemical Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, CA 94720, USA.

Department of Chemistry, University of California, Berkeley, CA 94720, USA.

出版信息

Faraday Discuss. 2019 Jul 18;217(0):414-433. doi: 10.1039/c8fd00229k.

Abstract

Polycyclic aromatic hydrocarbons (PAHs) may comprise up to 20% of the carbon budget in our galaxy and most PAHs condense onto water-rich icy grain mantles. Benzene-water clusters have been invoked as model systems for studying the photo-processing of water ice mantles containing PAHs. However, there is a paucity of information on larger aromatics, where the extended π cloud could affect photo-processing. In this study, tunable vacuum ultraviolet (VUV) photoionization of naphthalene-water clusters Nx(H2O)y (N denotes naphthalene) is performed using synchrotron radiation and analyzed by reflectron time-of-flight mass spectrometry. Naphthalene clusters up to x = 4 are generated as are naphthalene-water clusters up to y = 25. At low photon energy (<11 eV), the naphthalene moiety is ionized and there is no proton transfer from N+ to the water sub-cluster, which is very different from the benzene-water system. Protonated products, N[(H2O)xH]+ and OH radical addition product (NOH)[(H2O)xH]+ are generated above 11 eV, suggesting that water sub-clusters dominate the dynamics at high photon energies. Ab initio calculations are performed to decipher the experimental results. Energetics of the neutral structures N(H2O)1-4 and their photoionized counterparts are calculated, including ionization on the N moiety as well as on the water sub-cluster. Energy decomposition analysis (EDA) is performed to understand trends in the binding between the naphthalene and the water sub-cluster in the ionized species.

摘要

多环芳烃(PAHs)可能占我们星系碳预算的20%,并且大多数多环芳烃会凝结在富含水的冰粒幔层上。苯 - 水团簇已被用作研究含多环芳烃的水冰幔层光处理的模型系统。然而,对于更大的芳烃,由于其扩展的π云可能影响光处理,相关信息却很少。在本研究中,利用同步辐射对萘 - 水团簇Nx(H2O)y(N表示萘)进行可调谐真空紫外(VUV)光电离,并通过反射式飞行时间质谱进行分析。生成了x高达4的萘团簇以及y高达25的萘 - 水团簇。在低光子能量(<11 eV)下,萘部分被电离,并且没有质子从N+转移到水子团簇,这与苯 - 水系统非常不同。在11 eV以上会生成质子化产物N[(H2O)xH]+和OH自由基加成产物(NOH)[(H2O)xH]+,这表明在高光子能量下,水子团簇主导了动力学过程。进行了从头算计算以解读实验结果。计算了中性结构N(H2O)1 - 4及其光电离对应物的能量,包括在N部分以及水子团簇上的电离。进行了能量分解分析(EDA)以了解电离物种中萘与水子团簇之间结合的趋势。

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