JOURNAL ARTICLE

Accurate Density-Functional Calculation of Core-Electron Binding Energies of Some Substituted Benzenes

Yuji TakahataDelano P. Chong

Year: 2000 Journal:   Bulletin of the Chemical Society of Japan Vol: 73 (11)Pages: 2453-2460   Publisher: Oxford University Press

Abstract

Abstract The core electron binding energies (CEBE's) of benzene, seven monosubstituted benzenes (Ph-X) and one disubstituted benzene (p-NH2-C6H4-NO2) were calculated using density-functional theory (DFT). The unrestricted generalized transition-state (uGTS) model was employed. The DeMon DFT program with a combined functional of Becke's exchange (B88) with Perdew's correlation (P86) was used. The average absolute deviation of the calculated CEBE's of the title compounds was 0.3 eV when the cc-pVDZ basis set was used. The ``CEBE shift'' of the ring carbon in Ph-X was calculated while taking the CEBE on the ring carbon in Ph-H as a reference. The thus-calculated CEBE shifts agree with experiment within the value of the average absolute deviation, 0.1 eV. The signs and quantitative numerical values of the CEBE shifts are very close to the corresponding Hammett σ constants.

Keywords:
Chemistry Density functional theory Computational chemistry Core (optical fiber) Core electron Binding energy Electron Atomic physics Quantum mechanics

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Cited By
0.68
FWCI (Field Weighted Citation Impact)
25
Refs
0.67
Citation Normalized Percentile
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Citation History

Topics

Advanced Chemical Physics Studies
Physical Sciences →  Physics and Astronomy →  Atomic and Molecular Physics, and Optics
Molecular Junctions and Nanostructures
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Fullerene Chemistry and Applications
Physical Sciences →  Chemistry →  Organic Chemistry

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