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嘧啶和卤代嘧啶的暂时阴离子态。

Temporary anion states of pyrimidine and halopyrimidines.

机构信息

Dipartimento di Chimica G. Ciamician, Università di Bologna, via Selmi 2, 40126 Bologna, Italy.

出版信息

J Phys Chem A. 2011 Oct 6;115(39):10775-82. doi: 10.1021/jp206559d. Epub 2011 Sep 13.

DOI:10.1021/jp206559d
PMID:21875136
Abstract

The empty-level electronic structures of pyrimidine and its 2-chloro, 2-bromo, and 5-bromo derivatives have been studied with electron transmission spectroscopy (ETS) and dissociative electron attachment spectroscopy (DEAS) in the 0-5 eV energy range. The spectral features were assigned to the corresponding anion states with the support of theoretical calculations at the ab initio and density functional theory levels. The empty orbital energies obtained by simple Koopmans' theorem calculations, scaled with empirical equations, quantitatively reproduced the energies of vertical electron attachment to π* and σ* empty orbitals measured in the ET spectra and predicted vertical electron affinities close to zero for the three halo derivatives. The total anion currents of the halo derivatives, measured at the walls of the collision chamber as a function of the impact electron energy, presented intense maxima below 0.5 eV. The mass-selected spectra showed that, in this energy, range the total anion current is essentially due to halide fragment anions. The DEA cross sections of the bromo derivatives were found to be about six times larger than that of the chloro derivative. The absolute cross sections at incident electron energies close to zero were evaluated to be 10(-16)-10(-15) cm(2).

摘要

嘧啶及其 2-氯、2-溴和 5-溴衍生物的空能级电子结构已通过电子传输光谱(ETS)和电子离解谱(DEAS)在 0-5 eV 能量范围内进行了研究。通过从头算和密度泛函理论水平的理论计算,在支持的情况下,将光谱特征分配给相应的阴离子态。用简单的 Koopmans 定理计算得到的空轨道能量,用经验方程进行了缩放,定量地再现了 ET 光谱中测量到的垂直电子对π和σ空轨道的附着能量,并预测了三种卤代衍生物的垂直电子亲合能接近零。卤代衍生物的总阴离子电流作为碰撞室壁上的冲击电子能量的函数进行测量,在低于 0.5 eV 的能量下呈现出强烈的最大值。质量选择的光谱表明,在这个能量范围内,总阴离子电流主要是由卤化物碎片阴离子引起的。溴代衍生物的 DEA 截面被发现比氯代衍生物大约大六倍。在接近零入射电子能量时的绝对截面被评估为 10(-16)-10(-15) cm(2)。

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