The flexible piezoelectric energy harvester (FPEH), as an effective strategy for long-term power supply of implantable and wearable electronics, requires high areal output energy density, low mechanical stiffness, and high energy efficiency, simultaneously. The widely adopted sandwich FPEH, consisting of one relatively hard substrate sandwiched between two piezoelectric films, can provide a high areal output energy density, but also high mechanical stiffness and low energy efficiency due to its energy-wasting deformation of the hard substrate. Here, we propose a novel optimal soft-substrate sandwich FPEH with designs of sufficient length and optimized Young's modulus of the substrate, which is much smaller than that of the piezoelectric fil...
The major challenges in a piezoelectric energy harvester (PEH) are high operating frequency, narrow ...
The aim of this paper is to explore how to improve the efficiency of a vibrating hybrid energy harve...
This paper proposes a versatile non-linear model for predicting piezoelectric energy harvester perfo...
The flexible piezoelectric energy harvester (FPEH), as an effective strategy for long-term power sup...
Conventional energy harvesters using a single metal substrate can hardly collect sufficient energies...
Energy harvesting from ambient environment has attracted intensive attention over the years for powe...
This is the author accepted manuscript. The final version is available from IOP Publishing via the D...
Flexible piezoelectric energy harvesters (f-PEHs) have drawn attention for their potential use as po...
In recent years, harvesting energy from ubiquitous ultralow-frequency vibration sources, such as bio...
Harvesting energy from human motion to power wearable devices using flexible piezoelectric energy ha...
Energy-harvesting devices have been widely used to generate electrical power from the bio-kinetic en...
With the rapid development of low-power electronic devices such as wireless sensor networks, wearabl...
Piezoelectric energy harvesting is a technique that can utilize ambient vibration energy to generate...
A resonant vibration energy harvester typically comprises of a clamped anchor and a vibrating shuttl...
Over the last decade there has been a growing increase in research in the field of vibrational energ...
The major challenges in a piezoelectric energy harvester (PEH) are high operating frequency, narrow ...
The aim of this paper is to explore how to improve the efficiency of a vibrating hybrid energy harve...
This paper proposes a versatile non-linear model for predicting piezoelectric energy harvester perfo...
The flexible piezoelectric energy harvester (FPEH), as an effective strategy for long-term power sup...
Conventional energy harvesters using a single metal substrate can hardly collect sufficient energies...
Energy harvesting from ambient environment has attracted intensive attention over the years for powe...
This is the author accepted manuscript. The final version is available from IOP Publishing via the D...
Flexible piezoelectric energy harvesters (f-PEHs) have drawn attention for their potential use as po...
In recent years, harvesting energy from ubiquitous ultralow-frequency vibration sources, such as bio...
Harvesting energy from human motion to power wearable devices using flexible piezoelectric energy ha...
Energy-harvesting devices have been widely used to generate electrical power from the bio-kinetic en...
With the rapid development of low-power electronic devices such as wireless sensor networks, wearabl...
Piezoelectric energy harvesting is a technique that can utilize ambient vibration energy to generate...
A resonant vibration energy harvester typically comprises of a clamped anchor and a vibrating shuttl...
Over the last decade there has been a growing increase in research in the field of vibrational energ...
The major challenges in a piezoelectric energy harvester (PEH) are high operating frequency, narrow ...
The aim of this paper is to explore how to improve the efficiency of a vibrating hybrid energy harve...
This paper proposes a versatile non-linear model for predicting piezoelectric energy harvester perfo...