Plekan Oksana, Sa'adeh Hanan, Ciavardini Alessandra, Callegari Carlo, Cautero Giuseppe, Dri Carlo, Di Fraia Michele, Prince Kevin C, Richter Robert, Sergo Rudi, Stebel Luigi, Devetta Michele, Faccialà Davide, Vozzi Caterina, Avaldi Lorenzo, Bolognesi Paola, Castrovilli Mattea Carmen, Catone Daniele, Coreno Marcello, Zuccaro Fabio, Bernes Elisa, Fronzoni Giovanna, Toffoli Daniele, Ponzi Aurora
Elettra-Sincrotrone Trieste S.C.p.A., in Area Science Park, 34149 Basovizza, Trieste, Italy.
Department of Physics, The University of Jordan, Amman 11942, Jordan.
J Phys Chem A. 2020 May 21;124(20):4115-4127. doi: 10.1021/acs.jpca.0c02719. Epub 2020 May 11.
The valence and core-level photoelectron spectra of gaseous indole, 2,3-dihydro-7-azaindole, and 3-formylindole have been investigated using VUV and soft X-ray radiation supported by both an ab initio electron propagator and density functional theory calculations. Three methods were used to calculate the outer valence band photoemission spectra: outer valence Green function, partial third order, and renormalized partial third order. While all gave an acceptable description of the valence spectra, the last method yielded very accurate agreement, especially for indole and 3-formylindole. The carbon, nitrogen, and oxygen 1s core-level spectra of these heterocycles were measured and assigned. The double ionization appearance potential for indole has been determined to be 21.8 ± 0.2 eV by C 1s and N 1s Auger photoelectron spectroscopy. Theoretical analysis identifies the doubly ionized states as a band consisting of two overlapping singlet states and one triplet state with dominant configurations corresponding to holes in the two uppermost molecular orbitals. One of the singlet states and the triplet state can be described as consisting largely of a single configuration, but other doubly ionized states are heavily mixed by configuration interactions. This work provides full assignment of the relative binding energies of the core level features and an analysis of the electronic structure of substituted indoles in comparison with the parent indole.
利用真空紫外光和软X射线辐射,并结合从头算电子传播子和密度泛函理论计算,研究了气态吲哚、2,3 - 二氢 - 7 - 氮杂吲哚和3 - 甲酰基吲哚的价电子和芯能级光电子能谱。使用了三种方法来计算外层价带光电子能谱:外层价格林函数、部分三阶和重整化部分三阶。虽然所有方法都对价电子能谱给出了可接受的描述,但最后一种方法给出了非常精确的结果,特别是对于吲哚和3 - 甲酰基吲哚。测量并归属了这些杂环化合物的碳、氮和氧1s芯能级能谱。通过C 1s和N 1s俄歇光电子能谱确定吲哚的双电离出现势为21.8±0.2 eV。理论分析将双电离态确定为一个由两个重叠单重态和一个三重态组成的能带,其主要构型对应于两个最高分子轨道中的空穴。其中一个单重态和三重态可以很大程度上描述为由单一构型组成,但其他双电离态通过构型相互作用严重混合。这项工作提供了芯能级特征相对结合能的确切归属,并与母体吲哚相比分析了取代吲哚的电子结构。