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Vapor–Liquid Equilibrium Study of the Monochlorobenzene–4,6-Dichloropyrimidine Binary System

[Image: see text] The number of newly synthesized and produced organic chemicals has increased extremely quickly. However, the measurements of their physical properties, including their vapor–liquid equilibrium (VLE) data, are time-consuming. It so happens that there is no physical property data abo...

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Autores principales: Haaz, Eniko, Fozer, Daniel, Thangaraj, Ravikumar, Szőri, Milán, Mizsey, Peter, Toth, Andras Jozsef
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9161255/
https://www.ncbi.nlm.nih.gov/pubmed/35664587
http://dx.doi.org/10.1021/acsomega.2c00525
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author Haaz, Eniko
Fozer, Daniel
Thangaraj, Ravikumar
Szőri, Milán
Mizsey, Peter
Toth, Andras Jozsef
author_facet Haaz, Eniko
Fozer, Daniel
Thangaraj, Ravikumar
Szőri, Milán
Mizsey, Peter
Toth, Andras Jozsef
author_sort Haaz, Eniko
collection PubMed
description [Image: see text] The number of newly synthesized and produced organic chemicals has increased extremely quickly. However, the measurements of their physical properties, including their vapor–liquid equilibrium (VLE) data, are time-consuming. It so happens that there is no physical property data about a brand-new chemical. Therefore, the importance of calculating their physicochemical properties has been playing a more and more important role. 4,6-Dichloropyrimidine (DCP) is also a relatively new molecule of high industrial importance with little existing data. Therefore, their measurements and the comparison with the calculated data are of paramount concern. DCP is a widespread heterocyclic moiety that is present in synthetic pharmacophores with biological activities as well as in numerous natural products. Isobaric VLE for the binary system of 4,6-dichloropyrimidine and its main solvent monochlorobenzene (MCB) was measured using a vapor condensate and liquid circulation VLE apparatus for the first time in the literature. Density functional-based VLE was calculated using the COSMO-SAC protocol to verify the laboratory results. The COSMO-SAC calculation was found to be capable of representing the VLE data with high accuracy. Adequate agreement between the experimental and calculated VLE data was acquired with a minimal deviation of 3.0 × 10(–3), which allows for broader use of the results.
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spelling pubmed-91612552022-06-03 Vapor–Liquid Equilibrium Study of the Monochlorobenzene–4,6-Dichloropyrimidine Binary System Haaz, Eniko Fozer, Daniel Thangaraj, Ravikumar Szőri, Milán Mizsey, Peter Toth, Andras Jozsef ACS Omega [Image: see text] The number of newly synthesized and produced organic chemicals has increased extremely quickly. However, the measurements of their physical properties, including their vapor–liquid equilibrium (VLE) data, are time-consuming. It so happens that there is no physical property data about a brand-new chemical. Therefore, the importance of calculating their physicochemical properties has been playing a more and more important role. 4,6-Dichloropyrimidine (DCP) is also a relatively new molecule of high industrial importance with little existing data. Therefore, their measurements and the comparison with the calculated data are of paramount concern. DCP is a widespread heterocyclic moiety that is present in synthetic pharmacophores with biological activities as well as in numerous natural products. Isobaric VLE for the binary system of 4,6-dichloropyrimidine and its main solvent monochlorobenzene (MCB) was measured using a vapor condensate and liquid circulation VLE apparatus for the first time in the literature. Density functional-based VLE was calculated using the COSMO-SAC protocol to verify the laboratory results. The COSMO-SAC calculation was found to be capable of representing the VLE data with high accuracy. Adequate agreement between the experimental and calculated VLE data was acquired with a minimal deviation of 3.0 × 10(–3), which allows for broader use of the results. American Chemical Society 2022-05-19 /pmc/articles/PMC9161255/ /pubmed/35664587 http://dx.doi.org/10.1021/acsomega.2c00525 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Haaz, Eniko
Fozer, Daniel
Thangaraj, Ravikumar
Szőri, Milán
Mizsey, Peter
Toth, Andras Jozsef
Vapor–Liquid Equilibrium Study of the Monochlorobenzene–4,6-Dichloropyrimidine Binary System
title Vapor–Liquid Equilibrium Study of the Monochlorobenzene–4,6-Dichloropyrimidine Binary System
title_full Vapor–Liquid Equilibrium Study of the Monochlorobenzene–4,6-Dichloropyrimidine Binary System
title_fullStr Vapor–Liquid Equilibrium Study of the Monochlorobenzene–4,6-Dichloropyrimidine Binary System
title_full_unstemmed Vapor–Liquid Equilibrium Study of the Monochlorobenzene–4,6-Dichloropyrimidine Binary System
title_short Vapor–Liquid Equilibrium Study of the Monochlorobenzene–4,6-Dichloropyrimidine Binary System
title_sort vapor–liquid equilibrium study of the monochlorobenzene–4,6-dichloropyrimidine binary system
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9161255/
https://www.ncbi.nlm.nih.gov/pubmed/35664587
http://dx.doi.org/10.1021/acsomega.2c00525
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