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dc.contributor.authorMakhlouf, Jawher
dc.contributor.authorLouis, Hitler
dc.contributor.authorBenjamin, Innocent
dc.contributor.authorAmodu, Ismail O.
dc.contributor.authorValkonen, Arto
dc.contributor.authorAbuelizz, Hatem A.
dc.contributor.authorEl Bakri, Youness
dc.contributor.authorAl-Salahi, Rashad
dc.contributor.authorSmirani Sta, Wajda
dc.date.accessioned2024-05-15T06:00:48Z
dc.date.available2024-05-15T06:00:48Z
dc.date.issued2024
dc.identifier.citationMakhlouf, J., Louis, H., Benjamin, I., Amodu, I. O., Valkonen, A., Abuelizz, H. A., El Bakri, Y., Al-Salahi, R., & Smirani Sta, W. (2024). Preparation of novel [Co(SCN)4] hybrid material : crystal structure investigation, DFT mechanistic analysis, antioxidant activity, and molecular docking study for potential inflammatory disorder control. <i>Journal of Sulfur Chemistry</i>, <i>In Press</i>. <a href="https://doi.org/10.1080/17415993.2024.2334948" target="_blank">https://doi.org/10.1080/17415993.2024.2334948</a>
dc.identifier.otherCONVID_207756412
dc.identifier.urihttps://jyx.jyu.fi/handle/123456789/94823
dc.description.abstractThe crystal structure of the title solvated coordination compound, [Co CN)4(BtaH)2]·(BtaH)2.6(H2O), consists of discrete complexes in which the Co2+cations are sixfold coordinated by four N-bonded thiocyanate anions and two 1-H benzotriazolium molecules to generate distorted trans-CoN6 octahedra. The discrete entities are each connected by three solvate molecules into chains via strong O—H···N hydrogen bonds. These chains are further linked by additional O—H···N, N—H···O, N—H···S, O—H···S and O—H···O hydro-gen bonds into a three-dimensional network. Within this network, channels are formed that propagate along the c-axis direction and embed additional acetonitrile solvent molecules that are hydrogen-bonded to the network. In addition, density functional theory (DFT)calculations using the M06-2X/gen method were used to study the system’s electronic properties. Interestingly, molecular docking and topological analyses were performed on compounds against various target anti-inflammatory receptors to investigate which targets exhibit the best binding affinities and hydrogen-bonding interactions. Done. As a result, it exhibits excellent anti-inflammatory activity, making it a suitable drug candidate for inflammatory diseases.en
dc.format.mimetypeapplication/pdf
dc.language.isoeng
dc.publisherTaylor & Francis
dc.relation.ispartofseriesJournal of Sulfur Chemistry
dc.rightsCC BY-NC-ND 4.0
dc.subject.othermetal
dc.subject.otherthiocyanate
dc.subject.otherDFT calculations
dc.subject.othermolecular docking
dc.subject.othertopology analyses
dc.titlePreparation of novel [Co(SCN)4] hybrid material : crystal structure investigation, DFT mechanistic analysis, antioxidant activity, and molecular docking study for potential inflammatory disorder control
dc.typearticle
dc.identifier.urnURN:NBN:fi:jyu-202405153594
dc.contributor.laitosKemian laitosfi
dc.contributor.laitosDepartment of Chemistryen
dc.type.urihttp://purl.org/eprint/type/JournalArticle
dc.type.coarhttp://purl.org/coar/resource_type/c_2df8fbb1
dc.description.reviewstatuspeerReviewed
dc.relation.issn1741-5993
dc.relation.volumeIn Press
dc.type.versionacceptedVersion
dc.rights.copyright© 2024 Informa UK Limited, trading as Taylor & Francis Group
dc.rights.accesslevelembargoedAccessfi
dc.subject.ysotiheysfunktionaaliteoria
dc.subject.ysokompleksiyhdisteet
dc.subject.ysokiteet
dc.subject.ysobioaktiiviset yhdisteet
dc.subject.ysoantioksidantit
dc.subject.ysokoboltti
dc.subject.ysorikkiyhdisteet
dc.format.contentfulltext
jyx.subject.urihttp://www.yso.fi/onto/yso/p28852
jyx.subject.urihttp://www.yso.fi/onto/yso/p30190
jyx.subject.urihttp://www.yso.fi/onto/yso/p15440
jyx.subject.urihttp://www.yso.fi/onto/yso/p28433
jyx.subject.urihttp://www.yso.fi/onto/yso/p4727
jyx.subject.urihttp://www.yso.fi/onto/yso/p15221
jyx.subject.urihttp://www.yso.fi/onto/yso/p5731
dc.rights.urlhttps://creativecommons.org/licenses/by-nc-nd/4.0/
dc.relation.doi10.1080/17415993.2024.2334948
jyx.fundinginformationThis research was funded by Researchers Supporting Project No. RSP2024R353, King Saud Univer-sity, Riyadh, Saudi Arabia.
dc.type.okmA1


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