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使用13至720电子伏特的同步辐射对CF3CF2CF2C(O)Cl进行光激发、光电离和光碎片化。

Photoexcitation, photoionization, and photofragmentantion of CF3CF2CF2C(O)Cl using synchrotron radiation between 13 and 720 eV.

作者信息

Berrueta Martínez Yanina, Bava Yanina B, Erben Mauricio F, Cavasso Filho Reinaldo L, Romano Rosana M, Della Védova Carlos O

机构信息

CEQUINOR (UNLP-CONICET), Departamento de Química, Facultad de Ciencias Exactas, Universidad Nacional de La Plata , 47 esq. 115, 1900 La Plata, República Argentina.

出版信息

J Phys Chem A. 2015 Mar 12;119(10):1894-905. doi: 10.1021/jp5122504. Epub 2015 Feb 25.

Abstract

The main inner shell ionization edges of gaseous CF3CF2CF2C(O)Cl, including Cl 2p, C 1s, O 1s, and F 1s, have been measured in Total Ion Yield (TIY) mode by using tunable synchrotron radiation, and several resonance transitions have been assigned with the help of quantum chemical calculations. Interestingly, resonance transitions observed in the C 1s region can be assigned to different carbon atoms in the molecule according to the degree of fluorine substitution. Ionic photofragmentation processes have been studied by time-of-flight mass spectrometry in the Photoelectron-Photoion-Coincidence (PEPICO) and Photoelectron-Photoion-Photoion-Coincidence (PEPIPICO) modes. These techniques revealed a "memory-lost" effect especially around the C 1s region, since the fragmentation events are independent of the energy range considered. Moreover, different fragmentation mechanisms were inferred from these spectra in the valence (13.0-21.0 eV) as well as in the inner (180.0-750.0 eV) electronic energy regions. The vibrational spectral features of CF3CF2CF2C(O)Cl have been interpreted in terms of a conformational equilibrium between two conformations (gauche and anti of the CC single bond with respect to the CCl one) at room temperature, as determined from quantum chemical calculations and the detailed analysis of the infrared spectrum.

摘要

通过使用可调谐同步辐射,以总离子产率(TIY)模式测量了气态CF3CF2CF2C(O)Cl的主要内壳层电离边缘,包括Cl 2p、C 1s、O 1s和F 1s,并借助量子化学计算确定了几个共振跃迁。有趣的是,在C 1s区域观察到的共振跃迁可根据氟取代程度归因于分子中的不同碳原子。通过飞行时间质谱在光电子-光离子符合(PEPICO)和光电子-光离子-光离子符合(PEPIPICO)模式下研究了离子光解离过程。这些技术揭示了一种“记忆丧失”效应,特别是在C 1s区域附近,因为解离事件与所考虑的能量范围无关。此外,从这些光谱中推断出了价电子(13.0 - 21.0 eV)以及内层(180.0 - 750.0 eV)电子能量区域的不同解离机制。根据量子化学计算和红外光谱的详细分析,CF3CF2CF2C(O)Cl的振动光谱特征已根据室温下两种构象(CC单键相对于CCl单键的gauche和anti构象)之间的构象平衡进行了解释。

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