In recent years, flexible magnetoelectronics has attracted a great attention for its intriguing functionalities and potential applications, such as healthcare, memory, soft robots, navigation, and touchless human–machine interaction systems. Here, we provide the first attempt to demonstrate a new type of magneto-piezoresistance device, which possesses an ultrahigh sensitivity with several orders of resistance change under an external magnetic field (100 mT). In our device, Fe–Ni alloy powders are embedded in the silver nanowire-coated micropyramid polydimethylsiloxane films. Our devices can not only serve as an on/off switch but also act as a sensor that can detect different magnetic fields because of its ultrahigh sensitivity, which is ver...
A one-dimensional pencil-like magnetoelectric (ME) sensor prototype is proposed which consists of a ...
Silicon microcantilevers are realized and tested using different ferromagnetic thin films as active ...
Directeur de thèse : Christian Brosseau Collaboration etroite avec Jamal Ben Youssef, Laboratoire de...
In recent years, flexible magnetoelectronics has attracted a great attention for its intriguing func...
Artificial magnetoception is a new and yet to be explored path for humans to interact with the surro...
Implantable microelectrodes that can be remotely actuated via external fields are promising tools to...
The strain-driven interfacial coupling between the ferromagnetic and ferroelectric constituents of m...
Highly flexible bismuth Hall sensors on polymeric foils are fabricated, and the key optimization ste...
Current semiconductor-based CMOS devices may reach their physical limits in the next decade. To be a...
In article number 2101089, Gaspare Varvaro, Denys Makarov, and co-workers present skin-compliant tou...
A one-dimensional pencil-like magnetoelectric (ME) sensor prototype is proposed which consists of a ...
Inorganic nanomembranes are shapeable (flexible, printable, and even stretchable) and transferrable ...
The current establishment of stretchable electronics to form a seamless link between soft or even li...
Recently the consumer electronics market has experienced a major demand for autonomous, networked de...
Silicon microcantilevers are realized and tested using different ferromagnetic thin films as active ...
A one-dimensional pencil-like magnetoelectric (ME) sensor prototype is proposed which consists of a ...
Silicon microcantilevers are realized and tested using different ferromagnetic thin films as active ...
Directeur de thèse : Christian Brosseau Collaboration etroite avec Jamal Ben Youssef, Laboratoire de...
In recent years, flexible magnetoelectronics has attracted a great attention for its intriguing func...
Artificial magnetoception is a new and yet to be explored path for humans to interact with the surro...
Implantable microelectrodes that can be remotely actuated via external fields are promising tools to...
The strain-driven interfacial coupling between the ferromagnetic and ferroelectric constituents of m...
Highly flexible bismuth Hall sensors on polymeric foils are fabricated, and the key optimization ste...
Current semiconductor-based CMOS devices may reach their physical limits in the next decade. To be a...
In article number 2101089, Gaspare Varvaro, Denys Makarov, and co-workers present skin-compliant tou...
A one-dimensional pencil-like magnetoelectric (ME) sensor prototype is proposed which consists of a ...
Inorganic nanomembranes are shapeable (flexible, printable, and even stretchable) and transferrable ...
The current establishment of stretchable electronics to form a seamless link between soft or even li...
Recently the consumer electronics market has experienced a major demand for autonomous, networked de...
Silicon microcantilevers are realized and tested using different ferromagnetic thin films as active ...
A one-dimensional pencil-like magnetoelectric (ME) sensor prototype is proposed which consists of a ...
Silicon microcantilevers are realized and tested using different ferromagnetic thin films as active ...
Directeur de thèse : Christian Brosseau Collaboration etroite avec Jamal Ben Youssef, Laboratoire de...