Voltage control of magnetism via electric-field-driven ion migration (magneto-ionics) has generated intense interest due to its potential to greatly reduce heat dissipation in a wide range of information technology devices, such as magnetic memories, spintronic systems or artificial neural networks. Among other effects, oxygen ion migration in transition-metal-oxide thin films can lead to the generation or full suppression of controlled amounts of ferromagnetism ('ON-OFF' magnetic transitions) in a non-volatile and fully reversible manner. However, oxygen magneto-ionic rates at room temperature are generally considered too slow for industrial applications. Here, we demonstrate that sub-second ON-OFF transitions in electrolyte-gated paramagn...
International audienceThe magnetic properties of mesoporous cobalt ferrite films can be largely tune...
International audienceThe magnetic properties of mesoporous cobalt ferrite films can be largely tune...
International audienceThe magnetic properties of mesoporous cobalt ferrite films can be largely tune...
Voltage control of magnetism via electric-field-driven ion migration (magneto-ionics) has generated ...
Voltage control of magnetism via electric-field-driven ion migration (magneto-ionics) has generated ...
Voltage control of magnetism via electric-field-driven ion migration (magneto-ionics) has generated ...
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...
Electric-field-controlled magnetism can boost energy efficiency in widespread applications. However,...
Electric-field-controlled magnetism can boost energy efficiency in widespread applications. However,...
Voltage control of magnetism through electric field-induced oxygen motion (magneto-ionics) could rep...
Electric-field-controlled magnetism can boost energy efficiency in widespread applications. However,...
Electric-field-controlled magnetism can boost energy efficiency in widespread applications. However,...
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...
International audienceThe magnetic properties of mesoporous cobalt ferrite films can be largely tune...
International audienceThe magnetic properties of mesoporous cobalt ferrite films can be largely tune...
International audienceThe magnetic properties of mesoporous cobalt ferrite films can be largely tune...
Voltage control of magnetism via electric-field-driven ion migration (magneto-ionics) has generated ...
Voltage control of magnetism via electric-field-driven ion migration (magneto-ionics) has generated ...
Voltage control of magnetism via electric-field-driven ion migration (magneto-ionics) has generated ...
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...
Electric-field-controlled magnetism can boost energy efficiency in widespread applications. However,...
Electric-field-controlled magnetism can boost energy efficiency in widespread applications. However,...
Voltage control of magnetism through electric field-induced oxygen motion (magneto-ionics) could rep...
Electric-field-controlled magnetism can boost energy efficiency in widespread applications. However,...
Electric-field-controlled magnetism can boost energy efficiency in widespread applications. However,...
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...
International audienceThe magnetic properties of mesoporous cobalt ferrite films can be largely tune...
International audienceThe magnetic properties of mesoporous cobalt ferrite films can be largely tune...
International audienceThe magnetic properties of mesoporous cobalt ferrite films can be largely tune...