Engineering
Harvester
100%
Energy Harvesting
82%
Piezoelectric
71%
Magnetic Field
42%
Power Density
37%
Self-Powered
23%
Piezoelectric Material
22%
Carbon Nanotube
15%
Performance Analysis
15%
Power Source
14%
Strain Sensing
12%
Conversion Efficiency
12%
Data Transfer
11%
Figure of Merit
10%
Power Generation
9%
Resonant Frequency
9%
Power Requirement
9%
Wireless Power Transfer
8%
Cantilever Beam
8%
Reduced Graphene Oxide
7%
Photodetector
7%
Fast Response
7%
Vibration Mode
7%
Microelectromechanical System
7%
Magnetic Flux
7%
Circuit Model
7%
Graphene
7%
Smart Infrastructure
7%
Transducer
7%
Sensing Node
7%
Frequency Response
7%
Relative Error
7%
Design Consideration
7%
Charge Transport
7%
Power Electronics
7%
Output Power
7%
Hybrid Energy
6%
Power Factor
6%
Single Device
6%
Output Voltage
5%
Frame Rate
5%
Carnot Efficiency
5%
Keyphrases
Harvester
45%
Energy Harvesting
35%
Energy Harvesting System
27%
Energy Harvester
23%
Magnetic Field
18%
Magneto-mechano-electric
16%
Lead-free piezoelectric Composites
15%
Performance Analysis
15%
Smart Electronics
15%
Power Source
15%
Smart Tire
15%
Piezoelectric Energy Harvester
15%
Carbon Nanotubes
15%
Piezoelectric Ceramics
15%
Thermoacoustics
15%
Energy Harvester Array
15%
Conversion Efficiency
14%
Electrodynamics
12%
Generated Power
11%
High Power Density
11%
Wireless Power Transfer
11%
Self-powered
10%
High Performance
9%
Stray Magnetic Field
9%
Extremely Low-frequency Electromagnetic Fields (ELF-EMFs)
8%
Vibration Energy Harvester
8%
Power Factor
8%
Piezoelectric Beam
8%
Piezoelectric Materials
8%
Average Relative Error
7%
Grand Challenges
7%
Tire
7%
Complex Materials
7%
Half-Heusler
7%
Lumped Circuit Model
7%
Carbon Nanotube Network
7%
Bismuth Telluride
7%
Low-frequency Response
7%
Self-doping
7%
Materials Research
7%
Charge Transport
7%
Terrace Edges
7%
Fast Response
7%
Edge States
7%
Optimal Absorption
7%
Graphene-based Materials
7%
Reduced Graphene Oxide
7%
Wireless Data Transfer
7%
Doped Perovskite
7%
Lead-free piezoelectric
7%