Manipulation of the magnetic behavior of materials with voltage (i.e., magnetoelectric actuation) has become a topic of intense research during the last years. Apart from its obvious interest from a basic science standpoint, control and eventual switching of the magnetization without applying any external magnetic field (or spin polarized current) has the potential to drastically reduce the power consumption of magnetic devices due to the lack (or minimization) of Joule heating dissipation effects. Herein, an overview of the state-of-the-art of electrolyte-gated magnetoelectric actuation (where an electric field is applied using an electrolyte, either liquid or solid) is provided. The different types of mechanisms responsible for voltage-dr...
San Diego, California, United StatesInternational audienceUntil now, spintronics devices have relied...
Electric-field-controlled magnetism can boost energy efficiency in widespread applications. However,...
Magneto-ionics is an emerging field in materials science where voltage is used as an energy-efficien...
Manipulation of the magnetic behavior of materials with voltage (i.e., magnetoelectric actuation) ha...
This presentation covers different types of mechanisms and nanoporous materials whose magnetic prope...
The possibility of tuning magnetic material properties by ionic means is exciting both for basic sci...
New materials, based on nanoporous magnetic frameworks filled with liquid or solid dielectric phases...
Voltage control of magnetism through electric field-induced oxygen motion (magneto-ionics) could rep...
Voltage control of magnetism through electric field-induced oxygen motion (magneto-ionics) could rep...
One of the major quests in today’s microelectronic era is the development of novel low-power magneti...
Electric-field control of magnetism is a fundamentally different approach towards the implementation...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
The coupling of magnetic and electric order parameters, i.e., the magnetoelectric effect, has been w...
Electric-field-controlled magnetism can boost energy efficiency in widespread applications. However,...
Magnetic data storage and magnetically actuated devices are conventionally controlled by magnetic fi...
San Diego, California, United StatesInternational audienceUntil now, spintronics devices have relied...
Electric-field-controlled magnetism can boost energy efficiency in widespread applications. However,...
Magneto-ionics is an emerging field in materials science where voltage is used as an energy-efficien...
Manipulation of the magnetic behavior of materials with voltage (i.e., magnetoelectric actuation) ha...
This presentation covers different types of mechanisms and nanoporous materials whose magnetic prope...
The possibility of tuning magnetic material properties by ionic means is exciting both for basic sci...
New materials, based on nanoporous magnetic frameworks filled with liquid or solid dielectric phases...
Voltage control of magnetism through electric field-induced oxygen motion (magneto-ionics) could rep...
Voltage control of magnetism through electric field-induced oxygen motion (magneto-ionics) could rep...
One of the major quests in today’s microelectronic era is the development of novel low-power magneti...
Electric-field control of magnetism is a fundamentally different approach towards the implementation...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
The coupling of magnetic and electric order parameters, i.e., the magnetoelectric effect, has been w...
Electric-field-controlled magnetism can boost energy efficiency in widespread applications. However,...
Magnetic data storage and magnetically actuated devices are conventionally controlled by magnetic fi...
San Diego, California, United StatesInternational audienceUntil now, spintronics devices have relied...
Electric-field-controlled magnetism can boost energy efficiency in widespread applications. However,...
Magneto-ionics is an emerging field in materials science where voltage is used as an energy-efficien...