[Fe(TPT)2/3{MI(CN)2}2]·nSolv (MI=Ag, Au): new bimetallic porous coordination polymers with spin-crossover properties
Fecha
Autores
Arcis-Castillo, Zulema
Muñoz Roca, María del Carmen
Molnár, Gábor
Bousseksou, Azzedine
Real, José Antonio
Directores
Unidades organizativas
Handle
https://riunet.upv.es/handle/10251/33766
Cita bibliográfica
Arcis-Castillo, Z.; Muñoz Roca, MDC.; Molnár, G.; Bousseksou, A.; Real, JA. (2013). [Fe(TPT)2/3{MI(CN)2}2]·nSolv (MI=Ag, Au): new bimetallic porous coordination polymers with spin-crossover properties. Chemistry - A European Journal. 19(21):6851-6861. https://doi.org/10.1002/chem.201203559
Titulación
Resumen
Two new heterobimetallic porous coordination polymers with the formula [Fe(TPT)2/3{MI(CN)2}2]¿nSolv (TPT=[(2,4,6-tris(4-pyridyl)-1,3,5-triazine]; MI=Ag (nSolv=0, 1¿MeOH, 2¿CH2Cl2), Au (nSolv=0, 2¿CH2Cl2)) have been synthesized and their crystal structures were determined at 120¿K and 293¿K by single-crystal X-ray analysis. These structures crystallized in the trigonal R-3m space group. The FeII ion resides at an inversion centre that defines a [FeN6] coordination core. Four dicyanometallate groups coordinate at the equatorial positions, whilst the axial positions are occupied by the TPT ligand. Each TPT ligand is centred in a ternary axis and bridges three crystallographically equivalent FeII ions, whilst each dicyanometallate group bridges two crystallographically equivalent FeII ions that define a 3D network with the topology of NbO. There are two such networks, which interpenetrate each other, thereby giving rise to large spaces in which very labile solvent molecules are included (CH2Cl2 or MeOH). Crystallographic analysis confirmed the reversible structural changes that were associated with the occurrence of spin-crossover behaviour at the FeII ions, the most significant structural variation being the change in unit-cell volume (about 59¿Å3 per FeII ion). The spin-crossover behaviour has been monitored by means of thermal dependence of the magnetic properties, Mössbauer spectroscopy, and calorimetry.
Palabras clave
Coordination polymers, Iron, Porosity, Self-assembly, Spin crossover
ISSN
0947-6539
ISBN
Fuente
Chemistry - A European Journal
DOI
10.1002/chem.201203559
Enlaces relacionados
Agradecimientos
This work was supported by the Spanish Ministerio de Ciencia e Innovacion (MICINN, presently the Ministerio de Economia y Competitividad) and FEDER funds (CTQ2010-18414), the Generalitat Valenciana through projects PROMETEO/2012/049 and ACOMP2012/233, and the French ANR Chemoswitch project. Z.A.-C. thanks the Spanish Ministerio de Educacion, Cultura y Deporte for a doctoral (FPU) grant.