In this work, we show that thin biocompatible AlN films reveal a stable, frequency independent piezoresponse demonstrating a good applicability for implantable micro-generators. It was demonstrated that although more power is generated by resonant (tensile stressed) systems, e.g. cantilevers and planar membranes, the non-resonant (compressive stressed) systems, e.g. corrugated membranes, are preferable for this purpose due to the generation of sufficient power at low-frequency aperiodic vibrations and at very low accelerations
Aluminum nitride (AlN) is a piezoelectric material often used as thin film in SAW/BAW devices. Furth...
Flexible piezoelectric heterostructures based on aluminium nitride (AIN) grown on a polymeric soft s...
There is a high demand for novel flexible micro-devices for energy harvesting from low-frequency and...
This work aims for utilizing human ocular motion for the self-sufficient power supply of a minimally...
In this work we report on microstructures made of AlN for the use as piezoelectric microgenerators i...
The increasing demand of piezoelectric energy harvesters for wearable and implantable applications r...
The increasing demand of piezoelectric energy harvesters for wearable and implantable applications r...
The increasing demand of piezoelectric energy harvesters for wearable and implantable applications r...
In this work we report on the development of a flexible energy harvester based on piezoelectric Alum...
Advances in the areas of wireless technology and low-power electronics stimulated extensively resear...
Advances in the areas of wireless technology and low-power electronics stimulated extensively resear...
The present study analyzed a computational model to evaluate the electromechanical properties of the...
Piezoelectric energy harvesters are promising transducers for supplying low-power mobile/portable el...
Piezoelectric energy harvesters are promising transducers for supplying low-power mobile/portable el...
In this work we report on non-resonant piezoelectric micro-energy-harvesters based on corrugated mem...
Aluminum nitride (AlN) is a piezoelectric material often used as thin film in SAW/BAW devices. Furth...
Flexible piezoelectric heterostructures based on aluminium nitride (AIN) grown on a polymeric soft s...
There is a high demand for novel flexible micro-devices for energy harvesting from low-frequency and...
This work aims for utilizing human ocular motion for the self-sufficient power supply of a minimally...
In this work we report on microstructures made of AlN for the use as piezoelectric microgenerators i...
The increasing demand of piezoelectric energy harvesters for wearable and implantable applications r...
The increasing demand of piezoelectric energy harvesters for wearable and implantable applications r...
The increasing demand of piezoelectric energy harvesters for wearable and implantable applications r...
In this work we report on the development of a flexible energy harvester based on piezoelectric Alum...
Advances in the areas of wireless technology and low-power electronics stimulated extensively resear...
Advances in the areas of wireless technology and low-power electronics stimulated extensively resear...
The present study analyzed a computational model to evaluate the electromechanical properties of the...
Piezoelectric energy harvesters are promising transducers for supplying low-power mobile/portable el...
Piezoelectric energy harvesters are promising transducers for supplying low-power mobile/portable el...
In this work we report on non-resonant piezoelectric micro-energy-harvesters based on corrugated mem...
Aluminum nitride (AlN) is a piezoelectric material often used as thin film in SAW/BAW devices. Furth...
Flexible piezoelectric heterostructures based on aluminium nitride (AIN) grown on a polymeric soft s...
There is a high demand for novel flexible micro-devices for energy harvesting from low-frequency and...