Piezoelectric and triboelectric nanogenerators (NGs) have been proposed in the past few years to effectively harvest mechanical energy from the environment. Here, a polydimethylsiloxane (PDMS) layer is placed under the aluminum electrode of polyvinylidene fluoride (PVDF), thus forming an r-shaped hybrid NG. Micro/nanostructures have been fabricated on the PDMS surface and the aluminum electrodes of PVDF to enhance the output performance. Power densities of the piezoelectric part and the triboelectric part are 10.95 and 2.04 mW/cm<sup>3</sup>, respectively. Moreover, influence of the triboelectric charges on the piezoelectric output voltage is investigated. Both finite element method simulations and experimental measurements are conducted to...
Nanogenerator has been a major focus among researchers of recent time due to its versatile use in ev...
The growing concerns around the long-term viability of the fossil fuel-based energy and its associat...
This study aimed to develop a novel hybrid piezoelectric structure based on poly(vinylidene difluori...
Piezoelectric and triboelectric nanogenerators (NGs) have been proposed in the past few years to eff...
Piezoelectric and triboelectric nanogenerators (NGs) have been proposed in the past few years to eff...
In this paper, a hybrid nanogenerator with concurrently harvested piezoelectric and triboelectric me...
We demonstrated a hybrid nanogenerator (NG) exploiting both piezoelectric and triboelectric effects ...
A simple and cost-effective approach was developed to fabricate piezoelectric and triboelectric nano...
An attractive method to response the current energy crisis and produce sustainable nonpolluting powe...
Here, we demonstrate a novel device structure design to enhance the electrical conversion output of...
Piezoelectric and Triboelectric hybrid nanogenerators (PTENG) have attracted scientific attention du...
A wave-shaped hybrid nanogenerator (NG) with mutually enhanced piezoelectric and triboelectric outpu...
Even though batteries have long been considered as the most conventional and efficient technology to...
ABSTRACT: Harvesting energy from our living environment is an effective approach for sustainable, ma...
Department of Materials Science and EngineeringWidespread energy harvesting, generating self-suffici...
Nanogenerator has been a major focus among researchers of recent time due to its versatile use in ev...
The growing concerns around the long-term viability of the fossil fuel-based energy and its associat...
This study aimed to develop a novel hybrid piezoelectric structure based on poly(vinylidene difluori...
Piezoelectric and triboelectric nanogenerators (NGs) have been proposed in the past few years to eff...
Piezoelectric and triboelectric nanogenerators (NGs) have been proposed in the past few years to eff...
In this paper, a hybrid nanogenerator with concurrently harvested piezoelectric and triboelectric me...
We demonstrated a hybrid nanogenerator (NG) exploiting both piezoelectric and triboelectric effects ...
A simple and cost-effective approach was developed to fabricate piezoelectric and triboelectric nano...
An attractive method to response the current energy crisis and produce sustainable nonpolluting powe...
Here, we demonstrate a novel device structure design to enhance the electrical conversion output of...
Piezoelectric and Triboelectric hybrid nanogenerators (PTENG) have attracted scientific attention du...
A wave-shaped hybrid nanogenerator (NG) with mutually enhanced piezoelectric and triboelectric outpu...
Even though batteries have long been considered as the most conventional and efficient technology to...
ABSTRACT: Harvesting energy from our living environment is an effective approach for sustainable, ma...
Department of Materials Science and EngineeringWidespread energy harvesting, generating self-suffici...
Nanogenerator has been a major focus among researchers of recent time due to its versatile use in ev...
The growing concerns around the long-term viability of the fossil fuel-based energy and its associat...
This study aimed to develop a novel hybrid piezoelectric structure based on poly(vinylidene difluori...