| Literature DB >> 29894019 |
Anton A Ivanov1,2,3, Clément Falaise3, Pavel A Abramov1,4, Michael A Shestopalov1,2,4, Kaplan Kirakci5, Kamil Lang5, Mhamad A Moussawi3, Maxim N Sokolov1,4, Nikolay G Naumov1,4, Sébastien Floquet3, David Landy6, Mohamed Haouas3, Konstantin A Brylev1,4, Yuri V Mironov1,4, Yann Molard7, Stéphane Cordier7, Emmanuel Cadot3.
Abstract
Water-soluble salts of anionic [Re6 Q8 (CN)6 ]4- (Q=S, Se, Te) chalcogenide octahedral rhenium clusters react with γ-cyclodextrin (γ-CD) producing a new type of inclusion compounds. Crystal structures determined through single-crystal X-ray diffraction analysis revealed supramolecular host-guest assemblies resulting from close encapsulations of the octahedral cluster within two γ-CDs. Interestingly, nature of the inner Q ligands influences strongly the host-guest conformation. The cluster [Re6 S8 (CN)6 ]4- interacts preferentially with the primary faces of the γ-CD while the bulkier clusters [Re6 Se8 (CN)6 ]4- and [Re6 Te8 (CN)6 ]4- exhibit specific interactions with the secondary faces of the cyclic host. Furthermore, analysis of the crystal packing reveals additional supramolecular interactions that lead to 2D infinite arrangements with [Re6 S8 (CN)6 ]4- or to 1D "bamboo-like" columns with [Re6 Se8 (CN)6 ]4- and [Re6 Te8 (CN)6 ]4- species. Solution studies, using multinuclear NMR methods, ESI-MS and Isothermal titration calorimetry (ITC) corroborates nicely the solid-state investigations showing that supramolecular pre-organization is retained in aqueous solution even in diluted conditions. Furthermore, ITC analysis showed that host-guest stability increases significantly ongoing from S to Te. At last, we report herein that deep inclusion alters significantly the intrinsic physical-chemical properties of the octahedral clusters, allowing redox tuning and near IR luminescence enhancement.Entities:
Keywords: cyclodextrin; electrochemistry; luminescence; metal cluster complex; supramolecular self-assembly
Year: 2018 PMID: 29894019 DOI: 10.1002/chem.201802102
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236