The effect of applied pressure on the magnetic properties of the Prussian blue analogue K0.4Fe4[Cr(CN)6]2.8 ·16H2O (1) has been analyzed by dc and ac magnetic susceptibility measurements. Under ambient conditions, 1 orders ferromagnetically at a critical temperature (TC) of 18.5 K. Under application of pressure in the 0-1200 MPa range, the magnetization of the material decreases and its critical temperature shifts to lower temperatures, reaching TC ) 7.5 K at 1200 MPa. Pressure-dependent Raman and Mo¨ssbauer spectroscopy measurements show that this striking behavior is due to the isomerization of some CrIII-CtN-FeII linkages to the CrIII-NtC-FeII form. As a result, the ligand field around the iron(II) centers increases, and the diamagnetic ...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).Room temperature Fe and Co K...
Using a highly stoichiometric magnetite, the pressure-induced phase transitions of Fe3O4 have been r...
Using a highly stoichiometric magnetite, the pressure-induced phase transitions of Fe3O4 have been r...
The effect of applied pressure on the magnetic properties of the Prussian blue analogue K0.4Fe4[Cr(C...
This is the Accepted Manuscript of the following article: Coronado, E., Gimenez López, M.C., Korzeni...
A pressure-induced linkage isomerization of the cyanide anion has been observed in single crystals o...
We present the study of pressure effect on magnetic properties of $TM^{2+}_3[Cr^{III}(CN)_6]_2 \cdot...
The spin state of the Prussian blue analogue FeIIPtIV(CN)6 is investigated in response to temperatur...
The magnetic bimetallic molecular-based compounds attract considerable attention because of their un...
Prussian blue analogues (PBAs) and derivatives have been extensively studied for the wide variety of...
The effect of X-ray illumination on the structural properties of the mixed valence Prussian blue ana...
International audienceUsing a highly stoichiometric magnetite, the pressure-induced phase transition...
Abstract In the contribution we present the effect of pressure on magnetic properties of molecule ba...
We report on temperature dependent magnetic susceptibility and Mössbauer effect studies of the influ...
Effect of pressure on magnetic properties of magnetic nanoparticles, based on Prussian blue analogue...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).Room temperature Fe and Co K...
Using a highly stoichiometric magnetite, the pressure-induced phase transitions of Fe3O4 have been r...
Using a highly stoichiometric magnetite, the pressure-induced phase transitions of Fe3O4 have been r...
The effect of applied pressure on the magnetic properties of the Prussian blue analogue K0.4Fe4[Cr(C...
This is the Accepted Manuscript of the following article: Coronado, E., Gimenez López, M.C., Korzeni...
A pressure-induced linkage isomerization of the cyanide anion has been observed in single crystals o...
We present the study of pressure effect on magnetic properties of $TM^{2+}_3[Cr^{III}(CN)_6]_2 \cdot...
The spin state of the Prussian blue analogue FeIIPtIV(CN)6 is investigated in response to temperatur...
The magnetic bimetallic molecular-based compounds attract considerable attention because of their un...
Prussian blue analogues (PBAs) and derivatives have been extensively studied for the wide variety of...
The effect of X-ray illumination on the structural properties of the mixed valence Prussian blue ana...
International audienceUsing a highly stoichiometric magnetite, the pressure-induced phase transition...
Abstract In the contribution we present the effect of pressure on magnetic properties of molecule ba...
We report on temperature dependent magnetic susceptibility and Mössbauer effect studies of the influ...
Effect of pressure on magnetic properties of magnetic nanoparticles, based on Prussian blue analogue...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).Room temperature Fe and Co K...
Using a highly stoichiometric magnetite, the pressure-induced phase transitions of Fe3O4 have been r...
Using a highly stoichiometric magnetite, the pressure-induced phase transitions of Fe3O4 have been r...