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用阈值光电子能谱(TPES)研究二氟卡宾:CF(2)第一绝热电离能(AIE)的测量。

Difluorocarbene studied with threshold photoelectron spectroscopy (TPES): measurement of the first adiabatic ionization energy (AIE) of CF(2).

作者信息

Innocenti Fabrizio, Eypper Marie, Lee Edmond P F, Stranges Stefano, Mok Daniel K W, Chau Foo-tim, King George C, Dyke John M

机构信息

School of Chemistry, University of Southampton, Highfield, UK.

出版信息

Chemistry. 2008;14(36):11452-60. doi: 10.1002/chem.200801699.

Abstract

The first photoelectron band of difluorocarbene CF(2), has been studied by threshold photoelectron (TPE) spectroscopy. CF(2) was prepared by microwave discharge of a flowing mixture of hexafluoropropene, C(3)F(6), and argon. A vibrationally resolved band was observed in which at least twenty-two components were observed. In the first PE band of CF(2), the adiabatic ionization energy differs significantly from the vertical ionization energy because, for the ionization CF(2) (+) (X(2)A(1))+e(-) <-- CF(2) (X(1)A(1)), there is an increase in the FCF bond angle (by approximately 20 degrees ) and a decrease in the C--F bond length (by approximately 0.7 A). The adiabatic component was not observed in the experimental TPE spectrum. However, on comparing this spectrum with an ab initio/Franck-Condon simulation of this band, using results from high-level ab initio calculations, the structure associated with the vibrational components could be assigned. This led to alignment of the experimental TPE spectrum and the computed Franck-Condon envelope, and a determination of the first adiabatic ionization energy of CF(2) as (11.362+/-0.005) eV. From the assignment of the vibrational structure, values were obtained for the harmonic and fundamental frequencies of the symmetric stretching mode (nu(1)') and symmetric bending mode (nu(2)') in CF(2) (+) (X(2)A(1)).

摘要

二氟卡宾CF₂的首个光电子能带已通过阈值光电子(TPE)光谱进行了研究。CF₂是通过对六氟丙烯C₃F₆和氩气的流动混合物进行微波放电制备的。观察到一个振动分辨能带,其中至少观察到了二十二个组分。在CF₂的首个光电子能带中,绝热电离能与垂直电离能有显著差异,因为对于电离过程CF₂(+) (X²A₁)+e⁻ ← CF₂ (X¹A₁),FCF键角增大(约20度)且C - F键长减小(约0.7 Å)。在实验TPE光谱中未观察到绝热组分。然而,将该光谱与基于高水平从头算计算结果的该能带的从头算/弗兰克 - 康登模拟进行比较时,可以确定与振动组分相关的结构。这使得实验TPE光谱与计算得到的弗兰克 - 康登包络对齐,并确定CF₂的首个绝热电离能为(11.362±0.005) eV。根据振动结构的归属,得到了CF₂(+) (X²A₁)中对称伸缩模式(ν₁')和对称弯曲模式(ν₂')的谐波频率和基频值。

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