Suppr超能文献

氢氧化铁阳离子的水合能:导向离子束与理论研究

Hydration Energies of Iron Hydroxide Cation: A Guided Ion Beam and Theoretical Investigation.

作者信息

Sander Oxana, Armentrout P B

机构信息

Fachbereich Chemie , Technische Universität Darmstadt , Alarich-Weiss-Straße 8 , 64287 Darmstadt , Germany.

Department of Chemistry , University of Utah , 315 South 1400 East, Room 2020 , Salt Lake City , Utah 84112 , United States.

出版信息

J Phys Chem A. 2019 Feb 28;123(8):1675-1688. doi: 10.1021/acs.jpca.8b12257. Epub 2019 Feb 15.

Abstract

We present experimental collision-induced dissociation (CID) cross sections as a function of kinetic energy for FeOH(HO) , where n = 1-4, with xenon (Xe) obtained using a guided ion beam tandem mass spectrometer. Complexes with n = 2-4 are observed to undergo water loss, followed by sequential water loss at higher collision energies. In addition, we find that loss of the neutral hydroxide group is competitive with the primary water loss for n = 1. Bond dissociation energies (BDEs) at 0 K are derived through modeling of the experimental cross sections after accounting for multiple collisions, kinetic shifts, and reactant internal and kinetic energy distributions. Quantum chemical calculations include geometry optimizations performed at the B3LYP/6-311+G(d,p) level of theory and then used for single point calculations at B3LYP, B3P86, MP2, and CCSD(T) levels with a 6-311+G(2d,2p) basis set. Additional geometry optimizations at the cam-B3LYP/def2-TZVP were also performed as well as empirical dispersion corrections at all levels. The various structures for the FeOH(HO) complexes and their relative energies are discussed in detail. We also derive experimental BDEs for the OH loss from FeOH(HO) , with n = 2-4, using the experimental BDE of n = 1 in combination with literature data for water loss from Fe(HO) species. Measurements of BDEs for hydroxide and water loss from FeOH(HO) ( n = 1-4) are the first such experimental measurements. Theoretically calculated BDEs are in reasonable agreement for water loss from both FeOH(HO) and Fe(HO) complexes and for D(Fe-OH) but are too low for the loss of OH from the larger hydrated complexes.

摘要

我们展示了使用导向离子束串联质谱仪获得的FeOH(HO)ₙ(其中n = 1 - 4)与氙气(Xe)碰撞诱导解离(CID)的实验截面随动能的变化情况。观察到n = 2 - 4的配合物会发生失水,随后在更高的碰撞能量下依次失水。此外,我们发现对于n = 1,中性羟基的损失与初次失水存在竞争关系。在考虑多次碰撞、动力学位移以及反应物内部和动能分布后,通过对实验截面进行建模得出了0 K时的键解离能(BDEs)。量子化学计算包括在B3LYP/6 - 311 + G(d,p)理论水平上进行几何优化,然后用于在B3LYP、B3P86、MP2和CCSD(T)水平上使用6 - 311 + G(2d,2p)基组进行单点计算。还在cam - B3LYP/def2 - TZVP水平上进行了额外的几何优化,并在所有水平上进行了经验色散校正。详细讨论了FeOH(HO)ₙ配合物的各种结构及其相对能量。我们还结合Fe(HO)ₙ物种失水的文献数据,利用n = 1的实验BDE推导了n = 2 - 4时FeOH(HO)ₙ中OH损失的实验BDE。对FeOH(HO)ₙ(n = 1 - 4)中氢氧化物和水损失的BDE测量是首次此类实验测量。理论计算的BDE对于FeOH(HO)ₙ和Fe(HO)ₙ配合物的失水以及D(Fe - OH)来说合理一致,但对于较大水合配合物中OH的损失则过低。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验