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Migration of $Co^{2+}$ in zeolite CoY induced by water, ammonia and pyridine adsorption

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Migration of $Co^{2+}$ in zeolite CoY induced by water, ammonia and pyridine adsorption

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dc.contributor.author Góra-Marek, Kinga [SAP11018751] pl
dc.date.accessioned 2015-09-24T07:11:03Z
dc.date.available 2015-09-24T07:11:03Z
dc.date.issued 2010 pl
dc.identifier.issn 0924-2031 pl
dc.identifier.uri http://ruj.uj.edu.pl/xmlui/handle/item/15776
dc.language eng pl
dc.title Migration of $Co^{2+}$ in zeolite CoY induced by water, ammonia and pyridine adsorption pl
dc.type JournalArticle pl
dc.description.physical 31-38 pl
dc.abstract.en The migration of Co2+ cations in zeolite CoY was studied by IR spectroscopy. It has been found, that in the presence of water, ammonia, and pyridine Co2+ cations migrated from hexagonal prisms and/or cubooctahedra to supercages and were able to form complexes with H2O, NH3 or pyridine as ligands. The evidence of cations migration was the formation of mononitroslyl or dinitrosyl adducts if NO was sorbed in zeolite with preadsorbed H2O, NH3 or pyridine (without preadsorbed molecules Co2+ hidden in hexagonal prisms and/or cubooctahedra were inaccessible to NO). IR experiments suggested also that not all Co2+ could migrate. H2O and NH3 were able to withdraw only ca. 20–30% of Co2+, pyridine was more efficient and has withdrawn ca. 50% of all Co2+. Co2+ ions withdrawn by preadsorbed H2O, NH3 or pyridine to supercages can also form carbonyl adducts with CO (without preadsorbed molecules Co2+ ions were inaccessible to CO). The stretching frequencies of CO (in carbonyl adducts) or NO (in mononitrosyl adducts) for CO and NO interacting with Co2+ which bonds preadsorbed H2O, NH3 or pyridine were distinctly lower than if CO or NO interacted with Co2+ solo without preadsorbed molecules. This was explained by the transfer of electrons from electrondonor H2O, NH3 or pyridine molecules via Co2+ to antibonding π* orbitals of CO and NO. pl
dc.subject.en zeolite CoY pl
dc.subject.en sorption of NO pl
dc.subject.en sorption of CO pl
dc.subject.en IR spectroscopy pl
dc.description.volume 52 pl
dc.description.number 1 pl
dc.identifier.doi 10.1016/j.vibspec.2009.09.008 pl
dc.identifier.eissn 1873-3697 pl
dc.title.journal Vibrational Spectroscopy pl
dc.language.container eng pl
dc.affiliation Wydział Chemii : Zakład Chemii Nieorganicznej pl
dc.subtype Article pl
.pointsMNiSW [2010 A]: 27


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