Pt+ + SO2反应的热化学和机理:从引导离子束串联质谱和理论。

P. Armentrout
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引用次数: 0

摘要

采用离子束串联质谱仪和理论研究了Pt+ (2D5/2)与SO2反应的动能依赖关系。观察到的阳离子产物为PtO+和PtSO+,并伴有少量的PtS+,均为吸热反应生成。通过建立与动能相关的产物截面模型,可以确定产物键解离能(BDEs): D0(Pt+-O) = 3.14±0.11 eV, D0(Pt+-S) = 3.68±0.31 eV, D0(Pt+-SO) = 3.03±0.12 eV。氧化物BDE与更精确的文献值一致,而后两个结果是第一次这样的测量。利用def2-XZVPPD (X = T, Q)和aug8 -cc- pvxz (X = T, Q, 5)基集和完备基集外推,对B3LYP和耦合簇下的PtO+、PtS+、PtO2 +和PtSO+进行了量子力学计算,并具有单、双和摄动三重[CCSD(T)]理论水平。这些理论bde与实验值吻合得很好。加入经验自旋轨道修正后,确定产物基态为PtO+ (4Σ3/2)、PtS+ (4Σ3/2)、PtO2 + (2Σg +)和PtSO+ (2A’)。在B3LYP/def2-TZVPPD水平上计算了每个反应的势能分布,包括中间体和过渡态。比较了9族金属硫族阳离子的热化学周期变化趋势,并比较了Pt+ + SO2反应与Pt+ + O2、CO2、CO和NO反应生成的PtO+。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermochemistry and mechanisms of the Pt+ + SO2 reaction from guided ion beam tandem mass spectrometry and theory.
The kinetic energy dependences of the reactions of Pt+ (2D5/2) with SO2 were studied using a guided ion beam tandem mass spectrometer and theory. The observed cationic products are PtO+ and PtSO+, with small amounts of PtS+, all formed in endothermic reactions. Modeling the kinetic energy dependent product cross sections allows determination of the product bond dissociation energies (BDEs): D0(Pt+-O) = 3.14 ± 0.11 eV, D0(Pt+-S) = 3.68 ± 0.31 eV, and D0(Pt+-SO) = 3.03 ± 0.12 eV. The oxide BDE agrees well with more precise literature values, whereas the latter two results are the first such measurements. Quantum mechanical calculations were performed for PtO+, PtS+, PtO2 +, and PtSO+ at the B3LYP and coupled-cluster with single, double, and perturbative triple [CCSD(T)] levels of theory using the def2-XZVPPD (X = T, Q) and aug-cc-pVXZ (X = T, Q, 5) basis sets and complete basis set extrapolations. These theoretical BDEs agree well with the experimental values. After including empirical spin-orbit corrections, the product ground states are determined as PtO+ (4Σ3/2), PtS+ (4Σ3/2), PtO2 + (2Σg +), and PtSO+ (2A'). Potential energy profiles including intermediates and transition states for each reaction were also calculated at the B3LYP/def2-TZVPPD level. Periodic trends in the thermochemistry of the group 9 metal chalcogenide cations are compared, and the formation of PtO+ from the Pt+ + SO2 reaction is compared with those from the Pt+ + O2, CO2, CO, and NO reactions.
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