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Occupied and unoccupied electronic structures of an L-cysteine film studied by core-absorption and resonant photoelectron spectroscopies
Author(s) -
Masao Kamada,
Takuya Hideshima,
Junpei Azuma,
Isamu Yamamoto,
Masaki Imamura,
Kazutoshi Takahashi
Publication year - 2016
Publication title -
aip advances
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.421
H-Index - 58
ISSN - 2158-3226
DOI - 10.1063/1.4947072
Subject(s) - delocalized electron , valence (chemistry) , x ray photoelectron spectroscopy , atomic orbital , chemistry , sulfur , excited state , oxygen , electronic structure , atomic physics , molecular orbital , absorption spectroscopy , analytical chemistry (journal) , photochemistry , computational chemistry , nuclear magnetic resonance , molecule , physics , electron , organic chemistry , quantum mechanics , chromatography
Unoccupied and occupied electronic structures of an L-cysteine film have been studied by absorption and resonant photoelectron spectroscopies. Core absorptions at S-L, C-K, N-K, and O-K levels indicate that the lower unoccupied states are predominantly composed of oxygen-2p, carbon-2p, and sulfur-4s+3d orbitals, while higher unoccupied states may be attributed dominantly to nitrogen-np (n ≥ 3), oxygen-np (n ≥ 3), and sulfur-ns+md (n ≥ 4,  m ≥ 3) orbitals. Resonant photoelectron spectra at S-L23 and O-K levels indicate that the highest occupied state is originated from sulfur-3sp orbitals, while oxygen-2sp orbitals contribute to the deeper valence states. The delocalization lifetimes of the oxygen-1s and sulfur-2p excited states are estimated from a core-hole clock method to be about 9 ± 1 and 125 ± 25 fs, respectively

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