Mishra et al., 2022 - Google Patents
Electromechanical Performance of Biocompatible Piezoelectric Thin-Films. Actuators 2022, 11, 171Mishra et al., 2022
View PDF- Document ID
- 1465078182825337299
- Author
- Mishra S
- Hassani Fard S
- Sheikh T
- Behdinan K
- Publication year
External Links
Snippet
The present study analyzed a computational model to evaluate the electromechanical properties of the AlN, BaTiO3, ZnO, PVDF, and KNN-NTK thin-films. With the rise in sustainable energy options for health monitoring devices and smart wearable sensors …
Classifications
-
- H—ELECTRICITY
- H01—BASIC ELECTRIC ELEMENTS
- H01L—SEMICONDUCTOR DEVICES; ELECTRIC SOLID STATE DEVICES NOT OTHERWISE PROVIDED FOR
- H01L41/00—Piezo-electric devices in general; Electrostrictive devices in general; Magnetostrictive devices in general; Processes or apparatus specially adapted for the manufacture or treatment thereof or of parts thereof; Details thereof
- H01L41/08—Piezo-electric or electrostrictive devices
- H01L41/113—Piezo-electric or electrostrictive devices with mechanical input and electrical output, e.g. generators, sensors
- H01L41/1134—Beam type
Similar Documents
| Publication | Publication Date | Title |
|---|---|---|
| Dong et al. | Vibration‐energy‐harvesting system: transduction mechanisms, frequency tuning techniques, and biomechanical applications | |
| Algieri et al. | Flexible piezoelectric energy-harvesting exploiting biocompatible AlN thin films grown onto spin-coated polyimide layers | |
| Swallow et al. | A piezoelectric fibre composite based energy harvesting device for potential wearableapplications | |
| Deterre et al. | Micro blood pressure energy harvester for intracardiac pacemaker | |
| Haq | Application of piezo transducers in biomedical science for health monitoring and energy harvesting problems | |
| Yao et al. | Recent progress on the fabrication and applications of flexible ferroelectric devices | |
| Cao et al. | Flexible ferroelectret polymer for self-powering devices and energy storage systems | |
| Asthana et al. | A broadband piezoelectric energy harvester for IoT based applications | |
| Alrashdan et al. | Design and optimization of cantilever based piezoelectric micro power generator for cardiac pacemaker | |
| Zhou et al. | Chitosan-doped PVDF film with enhanced electroactive β phase for piezoelectric sensing | |
| Mishra et al. | Electromechanical performance of biocompatible piezoelectric thin-films | |
| Chen et al. | Mechanics of flexible and stretchable piezoelectrics for energy harvesting | |
| Wang et al. | Two-step regulation strategy improving stress transfer and poling efficiency boosts piezoelectric performance of 0–3 piezocomposites | |
| Deterre et al. | Micromachined piezoelectric spirals and ultra-compliant packaging for blood pressure energy harvesters powering medical implants | |
| Yang et al. | Mechanical energy harvesting: Advancements in piezoelectric nanogenerators | |
| Xue et al. | A wrist-worn rotational energy harvester utilizing magnetically plucked {001} oriented bimorph PZT thin-film beams | |
| Anand et al. | Design of a spiral-shaped piezoelectric energy harvester for powering pacemakers | |
| Varadha et al. | Performance improvement of piezoelectric materials in energy harvesting in recent days-a review. | |
| Sun et al. | Recent developments in wearable piezoelectric energy harvesters | |
| Pastrana et al. | Electrode effects on flexible and robust polypropylene ferroelectret devices for fully integrated energy harvesters | |
| Algieri et al. | Piezoelectricity and biocompatibility of flexible Sc x Al (1–x) N thin films for compliant MEMS transducers | |
| Sheng et al. | Fish-wearable piezoelectric nanogenerator for dual-modal energy scavenging from fish-tailing | |
| Khazaee et al. | Contact-Based Impact Energy Harvesting from the Ultralow Frequency Intracardiac Kinetic Energy | |
| Dewanjee et al. | Piezoelectric based V-shape cantilever beam design of energy harvester for biomedical applications | |
| Alrashdan et al. | Power density optimization for MEMS piezoelectric micro power generator below 100 Hz applications |