2022
DOI: 10.1007/s10601-022-09328-x
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How constraint programming can help chemists to generate Benzenoid structures and assess the local Aromaticity of Benzenoids

Abstract: Benzenoids are a subfamily of hydrocarbons (molecules that are only made of hydrogen and carbon atoms) whose carbon atoms form hexagons. These molecules are widely studied in theoretical chemistry and have a lot of concrete applications. Then, there is a lot of problems relative to this subject, like the enumeration of all its Kekulé structures (i.e. all valid configurations of double bonds). In this article, we focus our attention on two issues: the generation of benzenoid structures and the assessment of the… Show more

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Cited by 1 publication
(2 citation statements)
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“…The evolving aromatic structure in the kMC code 14 is represented by undirected graph G ( V , E ) with n vertices V representing the carbon atoms and m edges E representing the C–C bonds. 60 We introduce vector whose elements are edge multiplicities, equal to 1 for a single C–C bond and 2 for a double CC bond. The vertex valency is the sum of its incident-edge multiplicities.…”
Section: Calculation Methodsmentioning
confidence: 99%
See 1 more Smart Citation
“…The evolving aromatic structure in the kMC code 14 is represented by undirected graph G ( V , E ) with n vertices V representing the carbon atoms and m edges E representing the C–C bonds. 60 We introduce vector whose elements are edge multiplicities, equal to 1 for a single C–C bond and 2 for a double CC bond. The vertex valency is the sum of its incident-edge multiplicities.…”
Section: Calculation Methodsmentioning
confidence: 99%
“…The evolving aromatic structure in the kMC code 14 is represented by undirected graph G(V,E) with n vertices V representing the carbon atoms and m edges E representing the C-C bonds. 60 We introduce vector x ¼ x 1 ; x 2 ; . .…”
Section: Reaction Kineticsmentioning
confidence: 99%