This paper focuses on the fabrication and evaluation of vibration energy harvesting devices by utilizing an epitaxial Pb(Zr0.2Ti0.8)O-3 (PZT) thin film. The high quality of the c-axis oriented PZT layer results in a high piezoelectric coefficient and a low dielectric constant, which are key parameters for realizing high performance piezoelectric energy harvesters. Different cantilever structures, with and without a Si proof mass, are realized using micro-patterning techniques optimized for the epitaxial oxide layers, to maintain the piezoelectric properties throughout the process. The characteristics and the energy harvesting performances of the fabricated devices are experimentally investigated and compared against analytical calculations....
In order to collect energy from human activities, piezoelectric energy harvesters should have a flex...
Abstract In this study, Piezoelectric energy harvesters (PEHs) are fabricated based on epitaxial Pb(...
Piezoelectric microelectromechanical systems (MEMS) have been proven to be an attractive technology ...
This paper focuses on the fabrication and evaluation of vibration energy harvesting devices by utili...
We report on the properties of ferroelectric Pb(Zr0.2Ti0.8)O3 (PZT) thin films grown epitaxially on ...
Vibration energy harvesting has been progressively developed in the advancement of technology and wi...
A thin film lead zirconate titanate Pb(Zr,Ti)O3 (PZT), power generating device is developed. It is d...
Piezoelectric materials offer a number of advantages in energy harvesting systems, by transforming a...
AbstractA piezoelectric energy harvesting cantilever integrated with Si proof mass has been presente...
This paper reports on the microfabrication and characterization of piezoelectric MEMS structures bas...
ISBN 0-9743611-5-1International audienceA micro power generator for harvesting vibration energy by m...
Piezoelectric MEMS energy harvesters based on thin films are compact and cost-effective microgenerat...
AbstractA micro power generator harvesting vibration energy by resonant inertial oscillation of a pi...
Abstract—A piezoelectric MEMS energy harvester (EH) with low resonant frequency and wide operation b...
Abstract This paper presents a micro-fabricated flexible and curled PZT [Pb(Zr0.52Ti0.48)O3] cantile...
In order to collect energy from human activities, piezoelectric energy harvesters should have a flex...
Abstract In this study, Piezoelectric energy harvesters (PEHs) are fabricated based on epitaxial Pb(...
Piezoelectric microelectromechanical systems (MEMS) have been proven to be an attractive technology ...
This paper focuses on the fabrication and evaluation of vibration energy harvesting devices by utili...
We report on the properties of ferroelectric Pb(Zr0.2Ti0.8)O3 (PZT) thin films grown epitaxially on ...
Vibration energy harvesting has been progressively developed in the advancement of technology and wi...
A thin film lead zirconate titanate Pb(Zr,Ti)O3 (PZT), power generating device is developed. It is d...
Piezoelectric materials offer a number of advantages in energy harvesting systems, by transforming a...
AbstractA piezoelectric energy harvesting cantilever integrated with Si proof mass has been presente...
This paper reports on the microfabrication and characterization of piezoelectric MEMS structures bas...
ISBN 0-9743611-5-1International audienceA micro power generator for harvesting vibration energy by m...
Piezoelectric MEMS energy harvesters based on thin films are compact and cost-effective microgenerat...
AbstractA micro power generator harvesting vibration energy by resonant inertial oscillation of a pi...
Abstract—A piezoelectric MEMS energy harvester (EH) with low resonant frequency and wide operation b...
Abstract This paper presents a micro-fabricated flexible and curled PZT [Pb(Zr0.52Ti0.48)O3] cantile...
In order to collect energy from human activities, piezoelectric energy harvesters should have a flex...
Abstract In this study, Piezoelectric energy harvesters (PEHs) are fabricated based on epitaxial Pb(...
Piezoelectric microelectromechanical systems (MEMS) have been proven to be an attractive technology ...