Literature DB >> 21951129

Divalent metal vinylphosphonate layered materials: compositional variability, structural peculiarities, dehydration behavior, and photoluminescent properties.

Rosario M P Colodrero1, Aurelio Cabeza, Pascual Olivera-Pastor, Duane Choquesillo-Lazarte, Juan M Garcia-Ruiz, Adele Turner, Gheorghe Ilia, Bianca Maranescu, Konstantinos E Papathanasiou, Gary B Hix, Konstantinos D Demadis, Miguel A G Aranda.   

Abstract

A family of M-VP (M = Ni, Co, Cd, Mn, Zn, Fe, Cu, Pb; VP = vinylphosphonate) and M-PVP (M = Co, Cd; PVP = phenylvinylphosphonate) materials have been synthesized by hydrothermal methods and characterized by FT-IR, elemental analysis, and thermogravimetric analysis (TGA). Their structures were determined either by single crystal X-ray crystallography or from laboratory X-ray powder diffraction data. The crystal structure of some M-VP and M-PVP materials is two-dimensional (2D) layered, with the organic groups (vinyl or phenylvinyl) protruding into the interlamellar space. However, the Pb-VP and Cu-VP materials show dramatically different structural features. The porous, three-dimensional (3D) structure of Pb-VP contains the Pb center in a pentagonal pyramid. A Cu-VP variant of the common 2D layered structure shows a very peculiar structure. The structure of the material is 2D with the layers based upon three crystallographically distinct Cu atoms; an octahedrally coordinated Cu(2+) atom, a square planar Cu(2+) atom and a Cu(+) atom. The latter has an unusual co-ordination environment as it is 3-coordinated to two oxygen atoms with the third bond across the double bond of the vinyl group. Metal-coordinated water loss was studied by TGA and thermodiffractometry. The rehydration of the anhydrous phases to give the initial phase takes place rapidly for Cd-PVP but it takes several days for Co-PVP. The M-VP materials exhibit variable dehydration-rehydration behavior, with most of them losing crystallinity during the process.
© 2011 American Chemical Society

Entities:  

Year:  2011        PMID: 21951129     DOI: 10.1021/ic201760w

Source DB:  PubMed          Journal:  Inorg Chem        ISSN: 0020-1669            Impact factor:   5.165


  2 in total

1.  Structure simulation into a lamellar supramolecular network and calculation of the metal ions/ligands ratio.

Authors:  Aurelia Visa; Maria Mracec; Bianca Maranescu; Valentin Maranescu; Gheorghe Ilia; Adriana Popa; Mircea Mracec
Journal:  Chem Cent J       Date:  2012-08-29       Impact factor: 4.215

2.  1D and 2D hybrid polymers based on zinc phenylphosphates: synthesis, characterization and applications in electroactive materials.

Authors:  Maciej Dębowski; Zbigniew Florjańczyk; Andrzej Ostrowski; Piotr A Guńka; Janusz Zachara; Anna Krztoń-Maziopa; Jakub Chazarkiewicz; Anna Iuliano; Andrzej Plichta
Journal:  RSC Adv       Date:  2021-02-18       Impact factor: 3.361

  2 in total

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