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丙酮自由基阳离子的光电子和阈值光电子-光离子符合谱研究

A photoelectron and TPEPICO investigation of the acetone radical cation.

作者信息

Rennie Emma E, Boulanger Anne-Marie, Mayer Paul M, Holland David M P, Shaw David A, Cooper Louise, Shpinkova Larisa G

机构信息

Department of Chemistry, University of Ottawa, 10 Marie-Curie, Ottawa, Canada, K1N 6N5.

出版信息

J Phys Chem A. 2006 Jul 20;110(28):8663-75. doi: 10.1021/jp0616866.

Abstract

The valence shell photoelectron spectrum, threshold photoelectron spectrum, and threshold photoelectron photoion coincidence (TPEPICO) mass spectra of acetone have been measured using synchrotron radiation. New vibrational progressions have been observed and assigned in the X 2B2 state photoelectron bands of acetone-h6 and acetone-d6, and the influence of resonant autoionization on the threshold electron yield has been investigated. The dissociation thresholds for fragment ions up to 31 eV have been measured and compared to previous values. In addition, kinetic modeling of the threshold region for CH3* and CH4 loss leads to new values of 78 +/- 2 kJ mol(-1) and 75 +/- 2 kJ mol(-1), respectively, for the 0 K activation energies for these two processes. The result for the methyl loss channel is in reasonable agreement with, but slightly lower than, that of 83 +/- 1 kJ mol(-1) derived in a recent TPEPICO study by Fogleman et al. The modeling accounts for both low-energy dissociation channels at two different ion residence times in the mass spectrometer. Moreover, the effects of the ro-vibrational population distribution, the electron transmission efficiency, and the monochromator band-pass are included. The present activation energies yield a Delta(f)H298 for CH3CO+ of 655 +/- 3 kJ mol(-1), which is 4 kJ mol(-1) lower than that reported by Fogleman et al. The present Delta(f)H298 for CH3CO+ can be combined with the Delta(f)H298 for CH2CO (-47.5 +/- 1.6 kJ mol(-1)) and H+ (1530 kJ mol(-1)) to yield a 298 K proton affinity for ketene of 828 +/- 4 kJ mol(-1), in good agreement with the value (825 kJ mol(-1)) calculated at the G2 level of theory. The measured activation energy for CH4 loss leads to a Delta(f)H298 (CH2CO+*) of 873 +/- 3 kJ mol(-1).

摘要

利用同步辐射测量了丙酮的价壳层光电子能谱、阈光电子能谱和阈光电子光离子符合(TPEPICO)质谱。在丙酮 - h6和丙酮 - d6的X 2B2态光电子能带中观察到并指定了新的振动进展,并研究了共振自电离对阈电子产率的影响。测量了高达31 eV的碎片离子的解离阈值,并与先前的值进行了比较。此外,对CH3和CH4损失的阈区进行动力学建模,得到这两个过程在0 K时的活化能分别为78±2 kJ mol(-1)和75±2 kJ mol(-1)。甲基损失通道的结果与Fogleman等人最近的TPEPICO研究得出的83±1 kJ mol(-1)合理一致,但略低。该模型考虑了质谱仪中两种不同离子停留时间的低能解离通道。此外,还包括了转动 - 振动布居分布、电子传输效率和单色仪带通的影响。目前的活化能得出CH3CO+的ΔfH298为655±3 kJ mol(-1),比Fogleman等人报道的值低4 kJ mol(-1)。目前CH3CO+的ΔfH298可以与CH2CO(-47.5±1.6 kJ mol(-1))和H+(1530 kJ mol(-1))的ΔfH298相结合,得出乙烯酮在298 K时的质子亲和能为828±4 kJ mol(-1),与在G2理论水平计算的值(825 kJ mol(-1))非常一致。测量的CH4损失活化能导致ΔfH298(CH2CO+)为873±3 kJ mol(-1)。

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