Small-scale energy harvesting to power self-powered electronic devices is tremendously increasing. In this regard, the ability to combine thermal and mechanical harvesting using smart materials pays more attention. We have presented the feasibility of using P(VDF-TrFE) piezoelectric polymer coupled with NiTi shape memory alloy (SMA) to harvest both mechanical and thermal energy in simple scalable devices. A novel multi-layered SMA-P(VDF-TrFE) composite was fabricated and carried out their electro-thermo-mechanical performance. We have designed and developed an experimental bench to perform the electro-thermomechanical characterization of the composite, allowing us to measure the piezoelectric response when it is subjected to periodic heatin...
International audienceThis work proposes an enhanced method for thermal energy harvesting exploiting...
International audienceThis work proposes an enhanced method for thermal energy harvesting exploiting...
Electroactive polymers are studied and compared to create an innovating mechanical scavenging applic...
Small-scale energy harvesting to power self-powered electronic devices is tremendously increasing. I...
This thesis experimentally studies the possibility of thermal energy harvesting using coupled shape ...
Cette thèse étudie expérimentalement la possibilité de récupérer l'énergie thermique en utilisant un...
Les travaux de cette thèse portent sur la caractérisation du polymères piézoélectriques de PVDF et c...
978-89-967591-0-2International audienceA new concept of thermal-to-electric energy conversion by cou...
The concept of energy harvesting generally relates to the process of using ambient energy, which is ...
Smart materials such as piezoelectrics and shape memory alloys (SMA) are receiving increasing attent...
Recently, there has been an increased demand for power harvesting as a source of providing renewabl...
The advent of portable electronics has propelled an immense enthusiasm to generate energy from the ...
International audienceA novel flexible composite thermal energy harvester ispresented, which couples...
He need of self-powered and wireless systems is at the origin of intense research activity on the el...
International audienceThis work proposes an enhanced method for thermal energy harvesting exploiting...
International audienceThis work proposes an enhanced method for thermal energy harvesting exploiting...
Electroactive polymers are studied and compared to create an innovating mechanical scavenging applic...
Small-scale energy harvesting to power self-powered electronic devices is tremendously increasing. I...
This thesis experimentally studies the possibility of thermal energy harvesting using coupled shape ...
Cette thèse étudie expérimentalement la possibilité de récupérer l'énergie thermique en utilisant un...
Les travaux de cette thèse portent sur la caractérisation du polymères piézoélectriques de PVDF et c...
978-89-967591-0-2International audienceA new concept of thermal-to-electric energy conversion by cou...
The concept of energy harvesting generally relates to the process of using ambient energy, which is ...
Smart materials such as piezoelectrics and shape memory alloys (SMA) are receiving increasing attent...
Recently, there has been an increased demand for power harvesting as a source of providing renewabl...
The advent of portable electronics has propelled an immense enthusiasm to generate energy from the ...
International audienceA novel flexible composite thermal energy harvester ispresented, which couples...
He need of self-powered and wireless systems is at the origin of intense research activity on the el...
International audienceThis work proposes an enhanced method for thermal energy harvesting exploiting...
International audienceThis work proposes an enhanced method for thermal energy harvesting exploiting...
Electroactive polymers are studied and compared to create an innovating mechanical scavenging applic...