1-ethyluracil, a new scaffold for preparing multicomponent forms: synthesis, characterization, and computational studies

  • In this work, we describe the successful preparation of a series of cocrystals of the modified nucleobase 1-ethyluracil with different coformers in a 1:1 or 2:1 (nucleobase:coformer) ratio including urea (URE) or some compounds containing carboxylic and hydroxyl groups such as l-malic acid (MAL), l-tartaric acid (TAR), 2-hydroxybenzoic acid (SAL), 4-hydroxybenzoic acid (4HB), and 2,4-dihydroxybenzoic acid (DHB). The influence of the hydroxyl substituent on the alkyl chain for 1·TAR and 1·SAL cocrystals or the phenyl ring for 1·SAL, 1·4HB, and 1·DHB multicomponent solids was studied. All of the compounds were characterized by powder X-ray diffraction, FT-IR, and thermal methods. Moreover, for those whose single-crystal structures could be determined, computational studies were also performed to investigate the factors that may affect the cocrystal formation, the recurrent motifs, and the energies associated with the H-bonding interactions using DFT calculations and a combination of theIn this work, we describe the successful preparation of a series of cocrystals of the modified nucleobase 1-ethyluracil with different coformers in a 1:1 or 2:1 (nucleobase:coformer) ratio including urea (URE) or some compounds containing carboxylic and hydroxyl groups such as l-malic acid (MAL), l-tartaric acid (TAR), 2-hydroxybenzoic acid (SAL), 4-hydroxybenzoic acid (4HB), and 2,4-dihydroxybenzoic acid (DHB). The influence of the hydroxyl substituent on the alkyl chain for 1·TAR and 1·SAL cocrystals or the phenyl ring for 1·SAL, 1·4HB, and 1·DHB multicomponent solids was studied. All of the compounds were characterized by powder X-ray diffraction, FT-IR, and thermal methods. Moreover, for those whose single-crystal structures could be determined, computational studies were also performed to investigate the factors that may affect the cocrystal formation, the recurrent motifs, and the energies associated with the H-bonding interactions using DFT calculations and a combination of the quantum theory of atoms in molecules (QTAIM) and the noncovalent interaction index (NCIplot) computational tools.show moreshow less

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Metadaten
Author:Yannick Roselló, Mónica BenitoORCiDGND, Miquel Barceló-Oliver, Antonio Frontera, Elies Molins
URN:urn:nbn:de:bvb:384-opus4-1044482
Frontdoor URLhttps://opus.bibliothek.uni-augsburg.de/opus4/104448
ISSN:1528-7483OPAC
ISSN:1528-7505OPAC
Parent Title (English):Crystal Growth & Design
Publisher:American Chemical Society (ACS)
Type:Article
Language:English
Year of first Publication:2021
Publishing Institution:Universität Augsburg
Release Date:2023/05/19
Tag:Condensed Matter Physics; General Materials Science; General Chemistry
Volume:21
Issue:9
First Page:4857
Last Page:4870
DOI:https://doi.org/10.1021/acs.cgd.1c00175
Institutes:Mathematisch-Naturwissenschaftlich-Technische Fakultät
Mathematisch-Naturwissenschaftlich-Technische Fakultät / Institut für Physik
Dewey Decimal Classification:5 Naturwissenschaften und Mathematik / 54 Chemie / 540 Chemie und zugeordnete Wissenschaften
Licence (German):CC-BY 4.0: Creative Commons: Namensnennung (mit Print on Demand)