A review on piezoelectric, magnetostrictive, and magnetoelectric materials and device technologies for energy harvesting applications
F Narita, M Fox - Advanced Engineering Materials, 2018 - Wiley Online Library
In the coming era of the internet of things (IoT), wireless sensor networks that monitor, detect,
and gather data will play a crucial role in advancements in public safety, human healthcare …
and gather data will play a crucial role in advancements in public safety, human healthcare …
Mutual insight on ferroelectrics and hybrid halide perovskites: a platform for future multifunctional energy conversion
An insight into the analogies, state‐of‐the‐art technologies, concepts, and prospects under
the umbrella of perovskite materials (both inorganic–organic hybrid halide perovskites and …
the umbrella of perovskite materials (both inorganic–organic hybrid halide perovskites and …
Pyroelectric energy conversion and its applications—flexible energy harvesters and sensors
Among the various forms of natural energies, heat is the most prevalent and least harvested
energy. Scavenging and detecting stray thermal energy for conversion into electrical energy …
energy. Scavenging and detecting stray thermal energy for conversion into electrical energy …
Giant pyroelectric energy harvesting and a negative electrocaloric effect in multilayered nanostructures
This work examines the potential of PbZr0. 53Ti0. 47O3/CoFe2O4 (PZT/CFO) multi-layered
nanostructures (MLNs) to achieve a giant electrocaloric effect (ECE) and enhanced …
nanostructures (MLNs) to achieve a giant electrocaloric effect (ECE) and enhanced …
Lead-free relaxor-ferroelectric thin films for energy harvesting from low-grade waste-heat
One of the ways to mitigate the world energy crisis is to harvest clean and green energy from
waste-heat, which is abundant, ubiquitous, and free. Energy harvesting of this waste-heat is …
waste-heat, which is abundant, ubiquitous, and free. Energy harvesting of this waste-heat is …
Relaxor characteristics and pyroelectric energy harvesting performance of BaTi0. 91Sn0. 09O3 ceramic
H Kacem, A Dhahri, Z Sassi, L Seveyrat… - Journal of Alloys and …, 2021 - Elsevier
Ferroelectric materials are used in a number of applications such as sensors, transducers
and health monitoring systems. The multi-physical coupling ability possessed by these …
and health monitoring systems. The multi-physical coupling ability possessed by these …
Phase transformations, anisotropic pyroelectric energy harvesting and electrocaloric properties of (Pb, La)(Zr, Sn, Ti) O 3 single crystals
F Zhuo, Q Li, J Gao, Q Yan, Y Zhang, X Xi… - Physical Chemistry …, 2017 - pubs.rsc.org
(Pb, La)(Zr, Sn, Ti) O3 (PLZST) single crystals with their chemical composition located at the
tetragonal antiferroelectric region are grown via the flux method in a PbO–PbF2–B2O3 …
tetragonal antiferroelectric region are grown via the flux method in a PbO–PbF2–B2O3 …
Pyroelectric control of magnetization for tuning thermomagnetic energy conversion and magnetocaloric effect
Tri-layered PbZr0. 53Ti0. 47O3/CoFe2O4/PbZr0. 53Ti0. 47O3 (PZT/CFO/PZT)
nanostructures have been reported to have the highest pyroelectric energy harvesting and …
nanostructures have been reported to have the highest pyroelectric energy harvesting and …
Cyclic electrical energy harvesting using mechanical confinement in ferroelectric ceramics
Present study introduces a novel energy conversion cycle for giant electro‐mechanical
energy conversion using ferroelectric materials. The proposed cycle is used to perform …
energy conversion using ferroelectric materials. The proposed cycle is used to perform …
Thermal Energy Harvesting Capabilities in Lead-Free Ba0.85Ca0.15Ti0.9−xSnxZr0.10O3 Ferroelectric Ceramics
S Khobragade, S Patel - Journal of Electronic Materials, 2020 - Springer
The energy harvesting potential in bulk lead-free Ba 0.85 Ca 0.15 Ti 0.9− x Sn x Zr 0.10 O 3
(BCT–BZT-Sn) ferroelectric ceramic has been investigated. All the compositions (x= 0.01 …
(BCT–BZT-Sn) ferroelectric ceramic has been investigated. All the compositions (x= 0.01 …