This paper provides an overview of ferroelectret materials for energy harvesting applications. These materials take the form of a cellular compliant polymer with polarised pores that provide a piezoelectric response to generate electrical energy as a result of an applied strain or surrounding vibration. The manufacturing processes used to create ferroelectret polymer structures for energy harvesting are discussed, along with the range of microstructural features and pore sizes that are formed. Their important mechanical, electrical and harvesting performance are then described and compared. Modelling approaches for microstructural design or for predicting the vibrational and frequency dependent response are examined. Finally, conclusions an...
Applying flexible materials for energy scavenging from ambient mechanical vibrations is a clean ener...
Ferroelectret is a cellular polymer foam that is able to convert compressive and bending forces into...
Applying flexible materials for energy scavenging from ambient mechanical vibrations is a clean ener...
This paper provides an overview of ferroelectret materials for energy harvesting applications. These...
Ferroelectret is a thin and flexible cellular polymer foam that generates electrical power under mec...
Using piezoelectric materials to harvest energy from human movement provides a potential power sourc...
A ferroelectret is typically a charge-storing cellular foam that demonstrates excellent piezoelectri...
This paper reports the lamination of two thin fluorinated ethylene propylene (FEP) films onto the ba...
Ferroelectret is a cellular polymer foam that is able to convert compressive and bending forces into...
This is the author accepted manuscript. The final version is available from IOP Publishing via the D...
Piezoelectric energy harvesters (PEHs) have the potential to power low-power electronic devices and ...
Energy harvesting exploits ambient sources of energy such as mechanical loads, vibrations, human mot...
This work reports a novel thick-foam ferroelectret which is designed and engineered for energy harve...
Electroactive polymers are an emerging branch of smart materials that possess the capability to chan...
Cellular polypropylene (PP) ferroelectret is a thin and flexible cellular polymer foam that generate...
Applying flexible materials for energy scavenging from ambient mechanical vibrations is a clean ener...
Ferroelectret is a cellular polymer foam that is able to convert compressive and bending forces into...
Applying flexible materials for energy scavenging from ambient mechanical vibrations is a clean ener...
This paper provides an overview of ferroelectret materials for energy harvesting applications. These...
Ferroelectret is a thin and flexible cellular polymer foam that generates electrical power under mec...
Using piezoelectric materials to harvest energy from human movement provides a potential power sourc...
A ferroelectret is typically a charge-storing cellular foam that demonstrates excellent piezoelectri...
This paper reports the lamination of two thin fluorinated ethylene propylene (FEP) films onto the ba...
Ferroelectret is a cellular polymer foam that is able to convert compressive and bending forces into...
This is the author accepted manuscript. The final version is available from IOP Publishing via the D...
Piezoelectric energy harvesters (PEHs) have the potential to power low-power electronic devices and ...
Energy harvesting exploits ambient sources of energy such as mechanical loads, vibrations, human mot...
This work reports a novel thick-foam ferroelectret which is designed and engineered for energy harve...
Electroactive polymers are an emerging branch of smart materials that possess the capability to chan...
Cellular polypropylene (PP) ferroelectret is a thin and flexible cellular polymer foam that generate...
Applying flexible materials for energy scavenging from ambient mechanical vibrations is a clean ener...
Ferroelectret is a cellular polymer foam that is able to convert compressive and bending forces into...
Applying flexible materials for energy scavenging from ambient mechanical vibrations is a clean ener...