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Please use this identifier to cite or link to this item: https://oldena.lpnu.ua/handle/ntb/51787
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dc.contributor.authorMariichak, Oleksandra
dc.contributor.authorOleksii, Yuliia
dc.contributor.authorBaumer, Vyacheslav
dc.contributor.authorRozantsev, Georgiy
dc.contributor.authorRadio, Serhii
dc.coverage.temporal23–25 November 2018, Lviv
dc.date.accessioned2020-06-09T07:07:45Z-
dc.date.available2020-06-09T07:07:45Z-
dc.date.created2018-11-22
dc.date.issued2018-11-22
dc.identifier.citationCorrelation Between Structural Parameters and the Charge of Ln-heteroatom Nuclei in Isostructural Salts Na9[Ln(W5O18)2]·35H2O (Ln = Nd, Eu, Gd, Tb, Dy, Ho, Er) / Oleksandra Mariichak, Yuliia Oleksii, Vyacheslav Baumer, Georgiy Rozantsev, Serhii Radio // Litteris et Artibus : proceedings, 23–25 November 2018, Lviv. — Lviv : Lviv Politechnic Publishing House, 2018. — P. 258–259. — (7th International academic conference “Chemistry & chemical technology 2018” (CCT-2018)).
dc.identifier.isbn978-966-941-294-2
dc.identifier.urihttps://ena.lpnu.ua/handle/ntb/51787-
dc.description.abstractComparison of structural parameters in the isostructural sodium heteropoly decatungstolanthanidates(III) with Peacock–Weakley type anion Na9[Ln(W5O18)2]·35H2O (Ln = Nd, Eu, Gd, Tb, Dy, Ho, Er) showed the linear dependences for decreasing of Ln—Ob(W) bond lengths and O…O interatomic distances in the [Ln(W5O18)2]9–anion vs. the charge of Ln–heteroatom nuclei.
dc.format.extent258-259
dc.language.isoen
dc.publisherВидавництво Львівської політехніки
dc.publisherLviv Politechnic Publishing House
dc.relation.ispartofLitteris et Artibus : proceedings, 2018
dc.subjectheteropoly decatungstolanthanidate
dc.subjectpeacock–weakley anion
dc.subjectFT-IR spectroscopy
dc.subjectX-ray single crystal analysis
dc.subjectlanthanide
dc.titleCorrelation Between Structural Parameters and the Charge of Ln-heteroatom Nuclei in Isostructural Salts Na9[Ln(W5O18)2]·35H2O (Ln = Nd, Eu, Gd, Tb, Dy, Ho, Er)
dc.typeConference Abstract
dc.rights.holder© Національний університет “Львівська політехніка”, 2018
dc.contributor.affiliationVasyl Stus Donetsk National University
dc.contributor.affiliationSSI STC “Institute for Single Crystals” of National Academy of Sciences of Ukraine
dc.format.pages2
dc.identifier.citationenCorrelation Between Structural Parameters and the Charge of Ln-heteroatom Nuclei in Isostructural Salts Na9[Ln(W5O18)2]·35H2O (Ln = Nd, Eu, Gd, Tb, Dy, Ho, Er) / Oleksandra Mariichak, Yuliia Oleksii, Vyacheslav Baumer, Georgiy Rozantsev, Serhii Radio // Litteris et Artibus : proceedings, 23–25 November 2018, Lviv. — Lviv : Lviv Politechnic Publishing House, 2018. — P. 258–259. — (7th International academic conference “Chemistry & chemical technology 2018” (CCT-2018)).
dc.relation.references[1] Y. Yan, B. Li, W. Li et al. “Controllable vesicular structure and reversal of a surfactantencapsulated polyoxometalate complex”. Soft Matter, vol. 5(20), pp. 4047–4053, 2009.
dc.relation.references[2] M. Vonci, M.J. Giansiracusa, W. Van den Heuvel et al. “Magnetic Excitations in Polyoxotungstate-Supported Lanthanoid Single-Molecule Magnets: An Inelastic Neutron Scattering and ab Initio Study”. Inorg. Chem., vol. 56(1), pp. 378–394, 2017.
dc.relation.references[3] K. Sawada, T. Yamase. “Nonasodium decatungstodysprosate pentatriacontahydrate”. Acta Crystallogr., vol. C58, pp. i149–i151, 2002.
dc.relation.references[4] M.A. AlDamen, S. Cardona-Serra, J.M. Clemente-Juan et al. “Mononuclear Lanthanide Single Molecule Magnets Based on the Polyoxometalates [Ln(W5O18)2]9– and [Ln(β2-SiW11O39)2]13– (LnIII= Tb, Dy, Ho, Er, Tm, and Yb)”. Inorg. Chem., vol. 48(8), pp. 3467–3479, 2009.
dc.relation.references[5] J.J. Baldoví, J.M. Clemente-Juan, E. Coronado et al. “Construction of a General Library for the Rational Design of Nanomagnets and Spin Qubits Based on Mononuclear f-Block Complexes. The Polyoxometalate Case”. Inorg. Chem., vol. 53(18), pp. 9976–9980, 2014.
dc.relation.referencesen[1] Y. Yan, B. Li, W. Li et al. "Controllable vesicular structure and reversal of a surfactantencapsulated polyoxometalate complex". Soft Matter, vol. 5(20), pp. 4047–4053, 2009.
dc.relation.referencesen[2] M. Vonci, M.J. Giansiracusa, W. Van den Heuvel et al. "Magnetic Excitations in Polyoxotungstate-Supported Lanthanoid Single-Molecule Magnets: An Inelastic Neutron Scattering and ab Initio Study". Inorg. Chem., vol. 56(1), pp. 378–394, 2017.
dc.relation.referencesen[3] K. Sawada, T. Yamase. "Nonasodium decatungstodysprosate pentatriacontahydrate". Acta Crystallogr., vol. P.58, pp. i149–i151, 2002.
dc.relation.referencesen[4] M.A. AlDamen, S. Cardona-Serra, J.M. Clemente-Juan et al. "Mononuclear Lanthanide Single Molecule Magnets Based on the Polyoxometalates [Ln(W5O18)2]9– and [Ln(b2-SiW11O39)2]13– (LnIII= Tb, Dy, Ho, Er, Tm, and Yb)". Inorg. Chem., vol. 48(8), pp. 3467–3479, 2009.
dc.relation.referencesen[5] J.J. Baldoví, J.M. Clemente-Juan, E. Coronado et al. "Construction of a General Library for the Rational Design of Nanomagnets and Spin Qubits Based on Mononuclear f-Block Complexes. The Polyoxometalate Case". Inorg. Chem., vol. 53(18), pp. 9976–9980, 2014.
dc.citation.conference8th International youth science forum «Litteris et Artibus»
dc.citation.journalTitleLitteris et Artibus : proceedings
dc.citation.spage258
dc.citation.epage259
dc.coverage.placenameЛьвів
dc.coverage.placenameLviv
Appears in Collections:Litteris et Artibus. – 2018 р.

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