CNR-IMIP and CNR-ISM, Area della Ricerca di Roma 1, Via Salaria Km. 29.300, Monterotondo Scalo, Roma, Italy.
J Phys Chem A. 2009 Dec 3;113(48):13593-600. doi: 10.1021/jp908512v.
The inner shell ionization of pyrimidine and some halogenated pyrimidines has been investigated experimentally by X-ray photoemission spectroscopy (XPS) and theoretically by density functional theory (DFT) methods. The selected targets-5-Br-pyrimidine, 2-Br-pyrimidine, 2-Cl-pyrimidine, and 5-Br-2-Cl-pyrimidine-allowed the study of the effect of the functionalization of the pyrimidine ring by different halogen atoms bound to the same molecular site, or by the same halogen atom bound to different molecular sites. The theoretical investigation of the inductive and resonance effects in the C(1s) ionization confirms the soundness of the resonance model for a qualitative description of the properties of an aromatic system. Moreover, the combination of the experimental results and the theoretical analysis provides a detailed description of the effects of the halogen atom on the screening of a C(1s) hole in the aromatic pyrimidine ring.
嘧啶和一些卤代嘧啶的内壳层电离已经通过 X 射线光电子能谱(XPS)实验和密度泛函理论(DFT)方法进行了理论研究。所选的靶标-5-Br-嘧啶、2-Br-嘧啶、2-Cl-嘧啶和 5-Br-2-Cl-嘧啶-允许研究通过不同的卤素原子与同一分子位点结合,或者通过相同的卤素原子与不同的分子位点结合,对嘧啶环进行官能化的影响。C(1s)电离的诱导和共振效应的理论研究证实了共振模型对芳香体系性质进行定性描述的合理性。此外,实验结果和理论分析的结合为卤原子对芳香嘧啶环中 C(1s)空穴屏蔽的影响提供了详细的描述。