There is a high demand for novel flexible micro-devices for energy harvesting from low-frequency and random mechanical sources. The research of new functional designs is required to strategically enhance the performances and to increase the control on mechanical flexibility. In this work we report the fabrication and characterization of bi-stable and statically balanced thin-film piezoelectric transducers based on Aluminum Nitride (AlN). The device consists of a piezoelectric layer sandwiched between two thin Molybdenum electrodes that were deposited on a Kapton substrate by reactive sputtering and patterned by UV lithography. In order to improve the out-of-plane flexibility, the mechanical design is distinguished by a post-buckled flexure ...
Flexible piezoelectric heterostructures based on aluminium nitride (AIN) grown on a polymeric soft s...
Aluminum Nitride (AlN) is explored as a thin film material for piezoelectric MEMS applications. A pu...
Aluminum Nitride (AlN) is explored as a thin film material for piezoelectric MEMS applications. A pu...
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 increasing demand of piezoelectric energy harvesters for wearable and implantable applications r...
Aluminum nitride (AlN) is a piezoelectric material often used as thin film in SAW/BAW devices. Furth...
The increasing demand of piezoelectric energy harvesters for wearable and implantable applications r...
Piezoelectric vibration-based energy harvesting is a promising alternative for the durable and relia...
In this work the micro-fabrication of flexible MicroElectroMechanical transducers based on the piezo...
The increasing demand of piezoelectric energy harvesters for wearable and implantable applications r...
In this paper, we propose a flexible piezoelectric MEMS transducer based on aluminum nitride thin fi...
In this paper, we propose a flexible piezoelectric MEMS transducer based on aluminum nitride thin fi...
In this work we report on microstructures made of AlN for the use as piezoelectric microgenerators i...
Flexible piezoelectric heterostructures based on aluminium nitride (AIN) grown on a polymeric soft s...
Aluminum Nitride (AlN) is explored as a thin film material for piezoelectric MEMS applications. A pu...
Aluminum Nitride (AlN) is explored as a thin film material for piezoelectric MEMS applications. A pu...
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 increasing demand of piezoelectric energy harvesters for wearable and implantable applications r...
Aluminum nitride (AlN) is a piezoelectric material often used as thin film in SAW/BAW devices. Furth...
The increasing demand of piezoelectric energy harvesters for wearable and implantable applications r...
Piezoelectric vibration-based energy harvesting is a promising alternative for the durable and relia...
In this work the micro-fabrication of flexible MicroElectroMechanical transducers based on the piezo...
The increasing demand of piezoelectric energy harvesters for wearable and implantable applications r...
In this paper, we propose a flexible piezoelectric MEMS transducer based on aluminum nitride thin fi...
In this paper, we propose a flexible piezoelectric MEMS transducer based on aluminum nitride thin fi...
In this work we report on microstructures made of AlN for the use as piezoelectric microgenerators i...
Flexible piezoelectric heterostructures based on aluminium nitride (AIN) grown on a polymeric soft s...
Aluminum Nitride (AlN) is explored as a thin film material for piezoelectric MEMS applications. A pu...
Aluminum Nitride (AlN) is explored as a thin film material for piezoelectric MEMS applications. A pu...