| Literature DB >> 26878825 |
Beñat Artetxe1,2, Santiago Reinoso3, Leire San Felices4, Luis Lezama1,2, Juan M Gutiérrez-Zorrilla5,6, Cristian Vicent7, Fadi Haso8, Tianbo Liu8.
Abstract
A series of nine [Sb7W36O133Ln3M2(OAc)(H2O)8](17-) heterometallic anions (Ln3M2; Ln=La-Gd, M=Co; Ln=Ce, M=Ni and Zn) have been obtained by reacting 3 d metal disubstituted Krebs-type tungstoantimonates(III) with early lanthanides. Their unique tetrameric structure contains a novel {MW9O33} capping unit formed by a planar {MW6O24} fragment to which three {WO2} groups are condensed to form a tungstate skeleton identical to that of a hypothetical trilacunary derivative of the ɛ-Keggin cluster. It is shown, for the first time, that classical Anderson-Evans {MW6O24} anions can act as building blocks to construct purely inorganic large frameworks. Unprecedented reactivity in the outer ring of these disk-shaped species is also revealed. The Ln3M2 anions possess chirality owing to a {Sb4O4} cluster being encapsulated in left- or right-handed orientations. Their ability to self-associate in blackberry-type vesicles in solution has been assessed for the Ce3Co2 derivative.Entities:
Keywords: X-ray diffraction; cluster compounds; polyoxometalates; self-assembly; supramolecular chemistry
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Year: 2016 PMID: 26878825 DOI: 10.1002/chem.201504768
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236