volume 24 issue 5 pages 3163-3181

Gas-phase thermochemistry of polycyclic aromatic hydrocarbons: an approach integrating the quantum chemistry composite scheme and reaction generator

Publication typeJournal Article
Publication date2022-01-01
scimago Q2
wos Q2
SJR0.698
CiteScore5.3
Impact factor2.9
ISSN14639076, 14639084
PubMed ID:  35040851
Physical and Theoretical Chemistry
General Physics and Astronomy
Abstract
We introduce a protocol aimed at predicting the accurate gas-phase enthalpies of formation of polycyclic aromatic hydrocarbons (PAHs). Automatic generation of a dataset of equilibrated chemical reactions preserving the number of carbon atoms in each hybridization state on each side of equations is at the core of our scheme. The performed tests suggest the recommended enthalpy of formation to be derived via a two-step scheme. First, we consider the reactions with a minimal sum of the total number of particles involved, N, and the absolute difference between the total number of products and reactants, |ΔN|. Second, among these reactions, we identify the one with the smallest absolute reaction enthalpy change, . This approach has been applied to predict the gas-phase enthalpies of formation of 113 PAHs via the Feller–Peterson–Dixon approach. Our calculated values provide the mean absolute deviations of 1.7, 1.9, 4.2, 8.1, and 18.5 kJ mol−1 with respect to the literature group-based error corrected (GBEC) G3MP2B3, ATOMIC (HC), group equivalent M06-2X, GBEC B3LYP, and G4MP2 values. Our predicted values give the mean signed and mean absolute errors of −7.5 and 12.9 kJ mol−1 with respect to the experimental enthalpies of formation. The combination of our predicted and the experimental values provide the solid-state enthalpies of formation, , which are not available for a few species. Approaching these values as well as , producing large discrepancies from the experimental side, would be indispensable for testing and further tuning of computational chemistry approaches.
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Minenkova I. et al. Gas-phase thermochemistry of polycyclic aromatic hydrocarbons: an approach integrating the quantum chemistry composite scheme and reaction generator // Physical Chemistry Chemical Physics. 2022. Vol. 24. No. 5. pp. 3163-3181.
GOST all authors (up to 50) Copy
Minenkova I., Otlyotov A. A., Cavallo L. M., Minenkov Y. Gas-phase thermochemistry of polycyclic aromatic hydrocarbons: an approach integrating the quantum chemistry composite scheme and reaction generator // Physical Chemistry Chemical Physics. 2022. Vol. 24. No. 5. pp. 3163-3181.
RIS |
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RIS Copy
TY - JOUR
DO - 10.1039/d1cp03702a
UR - https://xlink.rsc.org/?DOI=D1CP03702A
TI - Gas-phase thermochemistry of polycyclic aromatic hydrocarbons: an approach integrating the quantum chemistry composite scheme and reaction generator
T2 - Physical Chemistry Chemical Physics
AU - Minenkova, Irina
AU - Otlyotov, Arseniy A
AU - Cavallo, Luigi Maria
AU - Minenkov, Yury
PY - 2022
DA - 2022/01/01
PB - Royal Society of Chemistry (RSC)
SP - 3163-3181
IS - 5
VL - 24
PMID - 35040851
SN - 1463-9076
SN - 1463-9084
ER -
BibTex |
Cite this
BibTex (up to 50 authors) Copy
@article{2022_Minenkova,
author = {Irina Minenkova and Arseniy A Otlyotov and Luigi Maria Cavallo and Yury Minenkov},
title = {Gas-phase thermochemistry of polycyclic aromatic hydrocarbons: an approach integrating the quantum chemistry composite scheme and reaction generator},
journal = {Physical Chemistry Chemical Physics},
year = {2022},
volume = {24},
publisher = {Royal Society of Chemistry (RSC)},
month = {jan},
url = {https://xlink.rsc.org/?DOI=D1CP03702A},
number = {5},
pages = {3163--3181},
doi = {10.1039/d1cp03702a}
}
MLA
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MLA Copy
Minenkova, Irina, et al. “Gas-phase thermochemistry of polycyclic aromatic hydrocarbons: an approach integrating the quantum chemistry composite scheme and reaction generator.” Physical Chemistry Chemical Physics, vol. 24, no. 5, Jan. 2022, pp. 3163-3181. https://xlink.rsc.org/?DOI=D1CP03702A.