The fundamental aspects of the relaxation dynamics in niccolite-type, mixed valence metal–organic framework, multiferroic [(CH3)2NH2][Fe3+Fe2+(HCOO)6] single crystals have been reported using dielectric relaxation spectroscopy covering eight decades in frequency (10−2 ≤ f ≤ 106) in the temperature range 120 K ≤ T ≤ 250 K. The compound shows antiferroelectric to paraelectric phase transition near T = 154 K with the relaxor nature of electric ordering. The temperature dependent dielectric response in modulus representation indicates three relaxation processes within the experimental window. The variable range hopping model of small polarons explains the bulk non-Debye type conductivity relaxation. The fastest relaxation with activation energy...
Elastic properties are important mechanical properties which are dependent on the structure, and the...
The Prussian blue (cyanide-bridged, ordered double perovskite) analogue potassium imidazolium hexacy...
Using a combination of resistance fluctuation (noise) and dielectric spectroscopy we investigate the...
Resonant ultrasound spectroscopy has been used to analyze magnetic and ferroelectric phase transitio...
Metal–organic frameworks (MOFs), in which metal clusters are coupled by organic moieties, exhibit in...
We have investigated the multiferroic and glassy behaviour of metal-organic framework (MOF) material...
The field of relaxor ferroelectrics has long been dominated by ceramic oxide materials exhibiting la...
Magnetic metal–organic frameworks (MOFs) with a perovskite structure AMX3 are emerging single‐phased...
ariable-temperature and variable-pressure single-crystal diffraction studies are carried out on a mi...
Strain coupling with ferromagnetism and ferroelectricity plays an important role in the development ...
In order to seek for the single-phase multiferroic metal-organic frameworks (MOFs) materials, we pre...
A non-chiral ferroelectric nematic compound DIO was studied by dielectric spectroscopy in the freque...
A non-chiral ferroelectric nematic compound with a 1,3-dioxane unit in the mesogenic core called 2,3...
The temperature dependence of the dielectric response of ordinary ferroelectric materials exhibits a...
The hybrid inorganic–organic [TPrA][M(dca)3] (M: Fe2+, Co2+ and Ni2+) compounds, where TPrA is the t...
Elastic properties are important mechanical properties which are dependent on the structure, and the...
The Prussian blue (cyanide-bridged, ordered double perovskite) analogue potassium imidazolium hexacy...
Using a combination of resistance fluctuation (noise) and dielectric spectroscopy we investigate the...
Resonant ultrasound spectroscopy has been used to analyze magnetic and ferroelectric phase transitio...
Metal–organic frameworks (MOFs), in which metal clusters are coupled by organic moieties, exhibit in...
We have investigated the multiferroic and glassy behaviour of metal-organic framework (MOF) material...
The field of relaxor ferroelectrics has long been dominated by ceramic oxide materials exhibiting la...
Magnetic metal–organic frameworks (MOFs) with a perovskite structure AMX3 are emerging single‐phased...
ariable-temperature and variable-pressure single-crystal diffraction studies are carried out on a mi...
Strain coupling with ferromagnetism and ferroelectricity plays an important role in the development ...
In order to seek for the single-phase multiferroic metal-organic frameworks (MOFs) materials, we pre...
A non-chiral ferroelectric nematic compound DIO was studied by dielectric spectroscopy in the freque...
A non-chiral ferroelectric nematic compound with a 1,3-dioxane unit in the mesogenic core called 2,3...
The temperature dependence of the dielectric response of ordinary ferroelectric materials exhibits a...
The hybrid inorganic–organic [TPrA][M(dca)3] (M: Fe2+, Co2+ and Ni2+) compounds, where TPrA is the t...
Elastic properties are important mechanical properties which are dependent on the structure, and the...
The Prussian blue (cyanide-bridged, ordered double perovskite) analogue potassium imidazolium hexacy...
Using a combination of resistance fluctuation (noise) and dielectric spectroscopy we investigate the...