Title of article :
Structural and photo-induced magnetic properties of MII 2[WIV(CN)8]·xH2O (M=Fe and x=8, Cu and x=5). Comparison with CuII 2[MoIV(CN)8]·7.5H2O
Author/Authors :
Guillaume Rombaut، نويسنده , , Corine Mathonière، نويسنده , , Philippe Guionneau، نويسنده , , Stéphane Golhen، نويسنده , , Lahcène Ouahab، نويسنده , , Marc Verelst
، نويسنده , , Pierre Lecante، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2001
Abstract :
This article describes bimetallic extended networks built from WIV(CN)8 4− and M2+=FeII, CuII, denoted hereafter as FeW for FeII 2[WIV(CN)8]·8H2O and CuW for CuII 2[WIV(CN)8]·5H2O. The crystal structure was solved in the tetragonal system for M=Fe, and consists of a three-dimensional (3D) structure with alternating W(CN)8 and Fe(H2O)2 units leading to an architecture formed by two perpendicular grids. X-ray powder studies for M=CuII have revealed that the compound crystallizes in the orthorhombic system. In order to obtain structural information of the network, the compounds have also been investigated by the WAXS technique. The results proved that both compounds adopt a similar architecture. All these structural features are compared to those obtained previously for MII 2[MoIV(CN)8]·xH2O denoted as FeMo and CuMo for M=Fe and Cu, respectively. FeW and FeMo compounds show identical 3D networks, whereas powders of Cu compounds are different: CuW is well crystallized and CuMo is poorly crystallized. The magnetic properties of the W analogs revealed weak antiferromagnetic interactions through the diamagnetic spacer NCWIVCN. The photomagnetic studies at different wavelengths (λ=413 and 530 nm) were performed for the Cu compounds. No effect was observed for CuW, whereas a photo-induced magnetic ordering is obtained for CuMo, explained by a photo-induced electron transfer between the MoIV and CuII metal centers. These results are discussed in relation with the structural features of the compounds.
Keywords :
X-ray powder diffraction , Octacyanometallates , crystal structures , Magnetic interactions , WAXS , Electron transfer , Photomagnetic effect
Journal title :
INORGANICA CHIMICA ACTA
Journal title :
INORGANICA CHIMICA ACTA