Synthesis, characterization and computational studies of 1,3-bis[(E)-furan- 2-yl)methylene]urea and 1,3-bis[(E)-furan-2-yl) methylene]thiourea

dc.contributor.authorAlabi, Kazeem Adelani
dc.contributor.authorAbdulsalami, Ibrahim Olasegun
dc.contributor.authorAdeoye, Moriam Dasola
dc.contributor.authorAderinto, Shukurat Modupe
dc.contributor.authorAdigun, Rasheed A.
dc.date.accessioned2023-11-29T12:34:11Z
dc.date.available2023-11-29T12:34:11Z
dc.date.issued2022-08
dc.description.abstractUrea and thiourea derivatives: 1,3-bis[(E)-furan-2-yl)methylene]urea (BFMU) and 1,3-bis[(E)-furan-2-yl)methylene]thiourea (BFMT) were synthesized and characterized by spectrometry analyses (UV, IR, 1H NMR and 13C NMR). They were screened for antibacterial (Salmonella typhi, Staphylococcus aureus, Pseudomonas aeruginosa, Xanthomonas axonopodis and Streptococcus bovis) and antifungal (Fusarium oxysporum, Colletotrichum gloeosporioides and Cercospora zeae-maydis) activities. Quantum chemical calculations of frontier molecular orbital energies (EHOMO and ELUMO), and their associated global parameters were carried out by DFT levels of theory, with complete relaxation in the potential energy surface using 6-31G* basis set (DFT/ B3LYP/6-31G*). Azomethine functional groups (C=N) appeared at δ 7.6 ppm and δ 7.0 ppm in the proton spectra, the peaks between δ 105 and δ 160 ppm of 13C spectra represent the methylene carbons (C=C). BFMU is a better inhibitor of P. aeruginosa and S. bovis, while BFMT is a better inhibitor of S. typhi, S. aureus and X. axonopodis and the fungi isolates (F. oxysporum, C. gloeosporioides and C. zeae-maydis) used. The global parameters agreed favorably with the experimental results, indicating the higher activity of BFMT.en_US
dc.description.departmentChemistryen_US
dc.description.librarianam2023en_US
dc.description.sdgNoneen_US
dc.description.urihttps://www.degruyter.com/journal/key/psr/htmlen_US
dc.identifier.citationAlabi, K.A., Abdulsalami, I.O., Adeoye, M.D. et al. 2022, 'Synthesis, characterization and computational studies of 1,3-bis[(E)-furan- 2-yl)methylene]urea and 1,3-bis[(E)-furan-2-yl) methylene]thiourea', Physical Sciences Reviews, vol. 7, no. 8, pp. 923-931. DOI : 10.1515/psr-2019-0134.en_US
dc.identifier.issn2365-6581 (print)
dc.identifier.issn2365-659X (online)
dc.identifier.other10.1515/psr-2019-0134
dc.identifier.urihttp://hdl.handle.net/2263/93544
dc.language.isoenen_US
dc.publisherDe Gruyteren_US
dc.rights© De Gruyteren_US
dc.subject1,3-Bis[(E)-furan-2-yl)methylene]thioureaen_US
dc.subject1,3-Bis[(E)-furan-2-yl)methylene] ureaen_US
dc.subjectFurfural andNMR spectraen_US
dc.titleSynthesis, characterization and computational studies of 1,3-bis[(E)-furan- 2-yl)methylene]urea and 1,3-bis[(E)-furan-2-yl) methylene]thioureaen_US
dc.typeArticleen_US

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