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Advance in Energy Harvesters/Nanogenerators and Self-Powered Sensors
Advance in Energy Harvesters/Nanogenerators and Self-Powered Sensors
Autore Shi Qiongfeng
Pubbl/distr/stampa Basel, : MDPI - Multidisciplinary Digital Publishing Institute, 2022
Descrizione fisica 1 electronic resource (220 p.)
Soggetto topico Technology: general issues
History of engineering & technology
Energy industries & utilities
Soggetto non controllato bacteriorhodopsin
photoelectric conversion
bioelectronics
nanopore
microfluidic
As(III) detection
electrochemical sensing
nanosensing
biosensing
energy harvesting
triboelectric mechanism
electrostatic mechanism
human motion status monitoring
IZTO/β-Ga2O3 Schottky diode
solar-blind
self-powered
photodetector
modeling
triboelectric
piezoelectric
electromagnetic
hybrid
implantable biomedical devices
triboelectric nanogenerator
energy harvester
self-powered biosensor
nerve stimulation
muscle stimulation
resistance-switching
green energy
hybrid nanogenerators
piezoelectric nanogenerator
thermoelectric nanogenerators
vibration energy harvesting
hybrid generators
triboelectric displacement sensors
triboelectric acceleration sensors
Ag2O/β-Ga2O3
heterojunction
deep ultraviolet
post-annealing
ISBN 3-0365-5883-7
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910639993903321
Shi Qiongfeng  
Basel, : MDPI - Multidisciplinary Digital Publishing Institute, 2022
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Energy Harvesters and Self-powered Sensors for Smart Electronics
Energy Harvesters and Self-powered Sensors for Smart Electronics
Autore Shi Qiongfeng
Pubbl/distr/stampa Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2021
Descrizione fisica 1 electronic resource (121 p.)
Soggetto topico Information technology industries
Soggetto non controllato energy harvesting
vibration
broadband
resonant frequency
piezoelectric vibration energy harvester
low frequency
wideband
modeling
energy harvester
temperature threshold
piezoelectricity
vibrational cantilever
bimetallic effect
piezoelectric
optimization
pattern search
FEM
PZT
electromagnetic
hybrid energy harvester
power density improvement
piezoelectric energy harvester
tandem
vortex-induced vibration
flowing water
vibration energy harvesting
electromagnetic generator (EMG)
nonlinear
magnetic coupling
high performance
diamagnetically stabilized levitation
Taguchi method
stable levitation
maximum gap
electromagnetic energy harvester
human body kinetic energy
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910557643603321
Shi Qiongfeng  
Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2021
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Selected Papers from the 19th International Conference on Micro- and Nano-Technology for Power Generation and Energy Conversion Applications (Power MEMS 2019)
Selected Papers from the 19th International Conference on Micro- and Nano-Technology for Power Generation and Energy Conversion Applications (Power MEMS 2019)
Autore Knapkiewicz Paweł
Pubbl/distr/stampa Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2021
Descrizione fisica 1 electronic resource (76 p.)
Soggetto topico History of engineering & technology
Soggetto non controllato coils
wireless power transfer
electrically small antennas
e-textiles
internet of things
wireless energy harvesting
thermoelectrics
GeTe
LiI as dopant
enhanced power factor
suppressed thermal transport
triboelectric nanogenerator (TENG)
mechanical energy harvesting
single-electrode
tapping
flexibility
porous/rough PDMS
parylene C
hermetic packaging
IoT
MEMS
microbattery
battery
harvester
tracker
wildlifetracking
heat flux
thermal resistance
thermal conductance
thermal energy harvesting
endothermic animal
fur
3D printing
energy harvester
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Altri titoli varianti Selected Papers from the 19th International Conference on Micro- and Nano-Technology for Power Generation and Energy Conversion Applications
Record Nr. UNINA-9910557770403321
Knapkiewicz Paweł  
Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2021
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Vibration Energy Harvesting for Wireless Sensors
Vibration Energy Harvesting for Wireless Sensors
Autore Hadas Zdenek
Pubbl/distr/stampa Basel, : MDPI - Multidisciplinary Digital Publishing Institute, 2022
Descrizione fisica 1 electronic resource (240 p.)
Soggetto topico Technology: general issues
History of engineering & technology
Soggetto non controllato energy harvester
electromagnetic
real vibration
nonlinearities
piezoelectric energy harvesting
triboelectric energy harvesting
low-frequency vibration energy harvesting
direct-force generator
vibration
frequency-up conversion
PVDF patches
structural health monitoring
sensing
energy harvesting
pipe leak detection
computational fluid dynamics
optimum sensor distribution
electromagnetic energy harvester
bi-stable oscillator
load resistance optimization
frequency response analysis
harmonic balance method
piezoelectric
piezoelectric ceramic
lead zirconate titanate (PZT)
polyvinylidene fluoride (PVDF)
efficiency
efficiency measurement
power conversion
power flow
vibrations
analytical model
beam model
equivalent model
power prediction
Structural Health Monitoring
damage detection
macro fiber composites (MFC)
damage sensitive feature
finite element method (FEM)
vibration energy-harvesting system
hysteretic effect
bistable oscillator
bifurcation
train
electromagnetic transducer
model
test
wireless sensor
SMART materials
magnetostriction
Terfenol-D
smart materials
wireless sensors
ultrasonic system
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910580204003321
Hadas Zdenek  
Basel, : MDPI - Multidisciplinary Digital Publishing Institute, 2022
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui