In this paper, electrospun piezoelectric PVDF-TrFE nanofibers were used for the fabrication of two types of flexible nanogenerator (NG) devices based on the direct piezoelectric effect, allowing the conversion of mechanical energy into electrical energy. The first one is composed of quite well aligned thin film nanofibers of about 35 μm and the second one is composed of random nanofibers of about 50 μm. The influence of the applied stress and strain rate on the output for both types of NG was studied. It is shown that the pulse peaks generated by NG increase with the applied mechanical strain frequency, the generated output is also proportional to the applied stress amplitude. The first NG loaded in bending mode can generate a maximum volta...
In this age of advanced smartphones and wearable devices, the need of unlimited power has become a b...
We report the effects of various substrates and substrate thicknesses on electrospun poly(vinylidene...
We report on highly stretchable piezoelectric structures of electrospun PVDF-TrFE nanofibers. We fab...
Flexible piezoelectric nanogenerators have attracted great attention due to their ability to convert...
Lead zirconate titanate (PbZr0.52Ti0.48O3, PZT) alloys have been extensively studied to be used for ...
Flexible piezoelectric nanogenerators have drawn considerable attention for their wide applications ...
Energy harvesting using piezoelectric nanomaterial provides an opportunity for advancement towards s...
Aligned P(VDF-TrFE) nanofibers are successfully fabricated by advanced electrospinning. The aligned ...
This study presents the experimental characterization and finite element investigation of a piezoele...
ABSTRACT Energy harvesting technologies that are engineered to miniature sizes, while still increasi...
This paper aims to investigate the energy harvesting capabilities of two piezoelectric nanogenerator...
This study aimed to develop a novel hybrid piezoelectric structure based on poly(vinylidene difluori...
PVDF (polyvinylidene fluoride) and its copolymers are the most promising piezoelectric polymers in s...
Development of flexible piezoelectric nanogenerator (PENG) is a real challenge for the next-generati...
Development of flexible piezoelectric nanogenerator (PENG) is a real challenge for the next-generati...
In this age of advanced smartphones and wearable devices, the need of unlimited power has become a b...
We report the effects of various substrates and substrate thicknesses on electrospun poly(vinylidene...
We report on highly stretchable piezoelectric structures of electrospun PVDF-TrFE nanofibers. We fab...
Flexible piezoelectric nanogenerators have attracted great attention due to their ability to convert...
Lead zirconate titanate (PbZr0.52Ti0.48O3, PZT) alloys have been extensively studied to be used for ...
Flexible piezoelectric nanogenerators have drawn considerable attention for their wide applications ...
Energy harvesting using piezoelectric nanomaterial provides an opportunity for advancement towards s...
Aligned P(VDF-TrFE) nanofibers are successfully fabricated by advanced electrospinning. The aligned ...
This study presents the experimental characterization and finite element investigation of a piezoele...
ABSTRACT Energy harvesting technologies that are engineered to miniature sizes, while still increasi...
This paper aims to investigate the energy harvesting capabilities of two piezoelectric nanogenerator...
This study aimed to develop a novel hybrid piezoelectric structure based on poly(vinylidene difluori...
PVDF (polyvinylidene fluoride) and its copolymers are the most promising piezoelectric polymers in s...
Development of flexible piezoelectric nanogenerator (PENG) is a real challenge for the next-generati...
Development of flexible piezoelectric nanogenerator (PENG) is a real challenge for the next-generati...
In this age of advanced smartphones and wearable devices, the need of unlimited power has become a b...
We report the effects of various substrates and substrate thicknesses on electrospun poly(vinylidene...
We report on highly stretchable piezoelectric structures of electrospun PVDF-TrFE nanofibers. We fab...