International audienceMultiferroic materials: A novel class of multiferroics based on organic–inorganic hybrid materials is synthesized. The ferromagnetic properties originate from the coordination network, whereas the ferroelectricity results from the polar organic ions (see picture, M=magnetization and P=polarization)
The convergence of proton conduction and multiferroics is generating a compelling opportunity to ach...
Multiferroics, showing simultaneous ordering of electrical and magnetic degrees of freedom, are rema...
Lanthanides ions allows for the design of remarkable magnetic compounds with unique magnetic propert...
International audienceMultiferroic materials: A novel class of multiferroics based on organic–inorga...
Organic ferroelectric materials are currently a hot research topic, with mixed stack charge transfer...
We report on the density functional theory aided design of a variety of organic ferroelectric and mu...
Historically most materials in magnetic applications are based on inorganic materials. Recently, how...
Most materials in magnetic applications are based on inorganic materials. Recently, however, organic...
Our research goals are focused on the preparation of novel molecule-based materials that possess spe...
Flexible electronics have garnered much interest over the past several decades. Hybrid organic-inorg...
We perform density functional theory calculations on a recently synthesized metal–organic framework ...
Materials that are simultaneously ferroelectric and ferromagnetic are gaining more and more attentio...
Organisch-anorganisch hybride materialen worden bestudeerd vanwege hun uitzonderlijke elektronische ...
Multifunctional molecular ferroelectrics are exciting materials synthesized using molecular chemistr...
ConspectusAlthough the first ferroelectric discovered in 1920 is Rochelle salt, a typical molecular ...
The convergence of proton conduction and multiferroics is generating a compelling opportunity to ach...
Multiferroics, showing simultaneous ordering of electrical and magnetic degrees of freedom, are rema...
Lanthanides ions allows for the design of remarkable magnetic compounds with unique magnetic propert...
International audienceMultiferroic materials: A novel class of multiferroics based on organic–inorga...
Organic ferroelectric materials are currently a hot research topic, with mixed stack charge transfer...
We report on the density functional theory aided design of a variety of organic ferroelectric and mu...
Historically most materials in magnetic applications are based on inorganic materials. Recently, how...
Most materials in magnetic applications are based on inorganic materials. Recently, however, organic...
Our research goals are focused on the preparation of novel molecule-based materials that possess spe...
Flexible electronics have garnered much interest over the past several decades. Hybrid organic-inorg...
We perform density functional theory calculations on a recently synthesized metal–organic framework ...
Materials that are simultaneously ferroelectric and ferromagnetic are gaining more and more attentio...
Organisch-anorganisch hybride materialen worden bestudeerd vanwege hun uitzonderlijke elektronische ...
Multifunctional molecular ferroelectrics are exciting materials synthesized using molecular chemistr...
ConspectusAlthough the first ferroelectric discovered in 1920 is Rochelle salt, a typical molecular ...
The convergence of proton conduction and multiferroics is generating a compelling opportunity to ach...
Multiferroics, showing simultaneous ordering of electrical and magnetic degrees of freedom, are rema...
Lanthanides ions allows for the design of remarkable magnetic compounds with unique magnetic propert...