dc.contributor.author
Mirzaei, M.
dc.contributor.author
Eshtiagh-Hosseini, H.
dc.contributor.author
Bolouri, Zahra
dc.contributor.author
Rahmati, Zahra
dc.contributor.author
Esmaeilzadeh, Atefeh
dc.contributor.author
Hassanpoor, Azam
dc.contributor.author
Bauza, Antonio
dc.contributor.author
Ballester, Pablo
dc.contributor.author
Barcelo-Oliver, Miguel
dc.contributor.author
Mague, Joel T.
dc.contributor.author
Notash, Behrouz Frontera, Antonio
dc.date.accessioned
2018-01-15T16:04:42Z
dc.date.accessioned
2018-02-15T10:28:08Z
dc.date.accessioned
2024-04-23T10:30:03Z
dc.date.available
2018-01-15T16:04:42Z
dc.date.available
2018-02-15T10:28:08Z
dc.date.available
2024-04-23T10:30:03Z
dc.identifier.uri
http://hdl.handle.net/2072/305818
dc.description.abstract
<p> <span lang="EN-US" style="font-size: 12pt; font-family: "Arial","sans-serif"; mso-fareast-font-family: "MS Mincho"; mso-fareast-theme-font: minor-fareast; mso-ansi-language: EN-US; mso-fareast-language: EN-US; mso-bidi-language: AR-SA"><font color="#000000">To examine the influence of the metal ions and their counterions on crystalline networks, we have designed and synthesized six MX2/8-aminoquinoline (8-aq) (M = Mn-II, Cu-II, Cd-II and X = Cl-, Br-, I-, NO3-, SCN-) complexes, having the formulas [Mn(8-aq)(2) I-2].(1), [Mn(8-aq)(2)(H2O)(2)](8-aq)(3).Br-2 (2), [Mn(8-aq)(2)(SCN)(2)] (3), [Cu(8-aq)(2)Cl(H2O)].Cl.H2O (4), [Cu(8-aq)(2)(NO3)(H2O)].NO3 (5), and Cd(8-aq)(2)I-2 (6). Single-crystal X-ray diffraction analyses showed that all of the complexes have a distorted octahedral geometry, in which each 8-aq molecule acts as a bidentate ligand and coordinates to the central metal ion with its common coordination mode, to form an N,N' chelating motif. Remarkably, the influence of the counterion on the geometry of the complex is very significant since both I- and SCN- anions are coordinated to the metal ion in compounds 1, 3, and 6, adopting a cis configuration, while a single anion occupies an axial position in compounds 4 and 5 (Cl- and NO3-, respectively) and the other counterion is not coordinated. Finally, both Br anions are not coordinated in the cationic complex 2 (Mn metal center). In all cases, there are extended supramolecular networks due to cooperativity hydrogen-bonding and pi-pi stacking interactions that play an essential role in the formation and stability of the crystalline materials. The binding energies attributed to the different interactions have been evaluated using DFT calculations.</font></span></p>
dc.relation
Proyecto de Investigación Fundamental no orientada
dc.relation
Severo Ochoa Excellence Accreditation 2014-2018
dc.relation.ispartof
Crystal Growth & Design
dc.rights
© 2015 American Chemical Society
dc.subject.other
heterogeneous catalytic-activity
dc.subject.other
iron(ii) coordination polymer
dc.subject.other
crystal-structures
dc.subject.other
8-aminoquinoline ligand
dc.subject.other
single-crystal
dc.subject.other
cadmium(ii)
dc.subject.other
property
dc.subject.other
symmetry
dc.title
Rationalization of Noncovalent Interactions within Six New M-II/8-Aminoquinoline Supramolecular Complexes (M-II = Mn, Cu, and Cd): A Combined Experime
dc.type
info:eu-repo/semantics/article
dc.relation.projectID
CTQ2011-23014
dc.relation.projectID
SEV-2013-0319
dc.relation.projectID
CSD2010-00065
dc.identifier.doi
https://doi.org/10.1021/Cg501752e
dc.rights.accessLevel
info:eu-repo/semantics/openAccess