New materials, based on nanoporous magnetic frameworks filled with liquid or solid dielectric phases, are overviewed. Due to their large surface area, these materials exhibit enhanced magnetoelectric effects (i.e., control of magnetism with voltage) compared to archetypical multiferroic heterostructures. The nanoporous magnetic films can either be metallic, oxides, or a mixture of metal and metal-oxide phases. When these composites are subjected to voltage, different magnetoelectric mechanisms can occur: Electric surface charging, strain-mediated coupling, or ion migration (magneto-ionics). Drastic changes in coercivity and magnetization are often observed, making these materials appealing for technological fields such as spintronics, magne...
Magnetoelectricity enables a solid-state material to generate electricity under magnetic fields. Mos...
Utilization of magnetoelectric effects in multiferroic materials hold great potential to fabricate n...
In this thesis, we focus on designing new material systems that could help reduce Ohmic loss to enab...
This presentation covers different types of mechanisms and nanoporous materials whose magnetic prope...
A synergetic approach to enhance magnetoelectric effects (i.e., control of magnetism with voltage) a...
Manipulation of the magnetic behavior of materials with voltage (i.e., magnetoelectric actuation) ha...
Manipulation of the magnetic behavior of materials with voltage (i.e., magnetoelectric actuation) ha...
Altres ajuts: French National Research Agency (ANR) grant agreement No ANR-15-CE24-0015-01.Voltage c...
Advances in nanotechnology require of robust methods to fabricate new types of nanostructured materi...
Magnetic data storage and magnetically actuated devices are conventionally controlled by magnetic fi...
Large magnetoelectric effects are observed in as-sputtered (nanoparticulate-like) and electrochemica...
Over the past decade magnetoelectric (ME) mutiferroic (MF) materials and their devices are one of th...
The possibility of tuning magnetic material properties by ionic means is exciting both for basic sci...
Electric-field control of magnetism is a fundamentally different approach towards the implementation...
Magnetic data storage and magnetically actuated devices are conventionally controlled by magnetic fi...
Magnetoelectricity enables a solid-state material to generate electricity under magnetic fields. Mos...
Utilization of magnetoelectric effects in multiferroic materials hold great potential to fabricate n...
In this thesis, we focus on designing new material systems that could help reduce Ohmic loss to enab...
This presentation covers different types of mechanisms and nanoporous materials whose magnetic prope...
A synergetic approach to enhance magnetoelectric effects (i.e., control of magnetism with voltage) a...
Manipulation of the magnetic behavior of materials with voltage (i.e., magnetoelectric actuation) ha...
Manipulation of the magnetic behavior of materials with voltage (i.e., magnetoelectric actuation) ha...
Altres ajuts: French National Research Agency (ANR) grant agreement No ANR-15-CE24-0015-01.Voltage c...
Advances in nanotechnology require of robust methods to fabricate new types of nanostructured materi...
Magnetic data storage and magnetically actuated devices are conventionally controlled by magnetic fi...
Large magnetoelectric effects are observed in as-sputtered (nanoparticulate-like) and electrochemica...
Over the past decade magnetoelectric (ME) mutiferroic (MF) materials and their devices are one of th...
The possibility of tuning magnetic material properties by ionic means is exciting both for basic sci...
Electric-field control of magnetism is a fundamentally different approach towards the implementation...
Magnetic data storage and magnetically actuated devices are conventionally controlled by magnetic fi...
Magnetoelectricity enables a solid-state material to generate electricity under magnetic fields. Mos...
Utilization of magnetoelectric effects in multiferroic materials hold great potential to fabricate n...
In this thesis, we focus on designing new material systems that could help reduce Ohmic loss to enab...