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Experimental and Theoretical Photoemission Study of Indole and Its Derivatives in the Gas Phase
- Source :
- The journal of physical chemistry. A 124 (2020): 4115–4127. doi:10.1021/acs.jpca.0c02719, info:cnr-pdr/source/autori: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; Facciala, Davide; Vozzi, Caterina; Avaldi, Lorenzo; Bolognesi, Paola; Castrovilli, Mattea Carmen; Catone, Daniele; Coreno, Marcello; Zuccaro, Fabio; Bernes, Elisa; Fronzoni, Giovanna; Toffoli, Daniele; Ponzi, Aurora/titolo:Experimental and Theoretical Photoemission Study of Indole and Its Derivatives in the Gas Phase/doi:10.1021%2Facs.jpca.0c02719/rivista:The journal of physical chemistry. A/anno:2020/pagina_da:4115/pagina_a:4127/intervallo_pagine:4115–4127/volume:124
- Publication Year :
- 2020
- Publisher :
- American Chemical Society, Washington, D.C. , Stati Uniti d'America, 2020.
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Abstract
- 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 is 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 is and N is 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.
- Subjects :
- Ionization
Indoles
Double ionization
Ab initio
010402 general chemistry
01 natural sciences
Molecular physics
0103 physical sciences
synchrotron
Physics::Atomic and Molecular Clusters
Molecular orbital
Singlet state
Physical and Theoretical Chemistry
Triplet state
Indole test
Valence (chemistry)
Energy
010304 chemical physics
Chemistry
Photoemission
Molecule
0104 chemical sciences
indole
Indole
Density functional theory
gas phase
photoemission
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Journal :
- The journal of physical chemistry. A 124 (2020): 4115–4127. doi:10.1021/acs.jpca.0c02719, info:cnr-pdr/source/autori: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; Facciala, Davide; Vozzi, Caterina; Avaldi, Lorenzo; Bolognesi, Paola; Castrovilli, Mattea Carmen; Catone, Daniele; Coreno, Marcello; Zuccaro, Fabio; Bernes, Elisa; Fronzoni, Giovanna; Toffoli, Daniele; Ponzi, Aurora/titolo:Experimental and Theoretical Photoemission Study of Indole and Its Derivatives in the Gas Phase/doi:10.1021%2Facs.jpca.0c02719/rivista:The journal of physical chemistry. A/anno:2020/pagina_da:4115/pagina_a:4127/intervallo_pagine:4115–4127/volume:124
- Accession number :
- edsair.doi.dedup.....86bd6a34b6d1b933896247c75ae9a5a4
- Full Text :
- https://doi.org/10.1021/acs.jpca.0c02719