We report the giant electrocaloric effect (ECE) of BaZr0.2Ti0.8O3 (BZT) thick film near room temperature. The BZT thick film was fabricated by the tape casting method with the thickness of 12.0 μm. Due to the near invariant critical point composition, relaxor behavior, and the stress generated between the film and the substrate, the thick film exhibits a large adiabatic temperature drop ΔT = −7 °C under 19.5 MV/m electric field, large EC coefficient ΔT/ΔE = 0.50 x 10−6 K · m · V−1, ΔS/ΔE = 0.88 x 10−6 J · m · kg−1 · K−1 · V−1 over a wide temperature range near room temperature, where ΔS is the isothermal entropy change and ΔE is the applied field. These high EC properties and possibility of fabrication of the EC ceramics into multilayer cer...
Recently large electrocaloric effects (ΔT = 12 K and ΔS = 8 JK-1kg-1 at 776 kV/cm) in antiferroelect...
The authors have recently observed a giant electrocaloric effect (12 K in 25 V) in 350 nm sol-gel Pb...
The ability to work at ultralow (−90 °C) or ultrahigh (200 °C) temperature with superior energy stor...
The electrocaloric effect (ECE) of BaTiO₃ multilayer thick film was investigated by direct calorimet...
An applied electric field can reversibly change the temperature of an electrocaloric material\ud und...
We have recently observed a giant electrocaloric effect (12 K in 25 V) in 350 nm sol-gel PbZr0.95Ti0...
7th China International Conference on High-Performance Ceramics, CICC-7, Xiamen, 4-7 November 2011We...
A 2-µm-Pb0.97La0.02(Zr0.75Sn0.18Ti0.07)O3 (PLZST) antiferroelectric (AFE) thick film with tetragonal...
In this paper, 0.93PMN-0.07PT thin film shows a giant electrocaloric effect at room temperature. At ...
The multicaloric effects of a PbZr0.2Ti0.8O3 thin film with 90° domain structure at room temperature...
International audienceUsing a phenomenological approach, we demonstrate that a giant mechanically-me...
An electrocaloric (EC) effect is the temperature change accompanied by the change in electric field ...
International audienceStrong electrocaloric effect in lead-free 0.65Ba(Zr 0.2 Ti 0.8)O 3-0.35(Ba 0.7...
Solid state cooling technologies based on electrocaloric, magnetocaloric and mechanocaloric effects ...
The electrocaloric effect of 9/65/35 PLZT thin film fabricated by the sol-gel method, which has not ...
Recently large electrocaloric effects (ΔT = 12 K and ΔS = 8 JK-1kg-1 at 776 kV/cm) in antiferroelect...
The authors have recently observed a giant electrocaloric effect (12 K in 25 V) in 350 nm sol-gel Pb...
The ability to work at ultralow (−90 °C) or ultrahigh (200 °C) temperature with superior energy stor...
The electrocaloric effect (ECE) of BaTiO₃ multilayer thick film was investigated by direct calorimet...
An applied electric field can reversibly change the temperature of an electrocaloric material\ud und...
We have recently observed a giant electrocaloric effect (12 K in 25 V) in 350 nm sol-gel PbZr0.95Ti0...
7th China International Conference on High-Performance Ceramics, CICC-7, Xiamen, 4-7 November 2011We...
A 2-µm-Pb0.97La0.02(Zr0.75Sn0.18Ti0.07)O3 (PLZST) antiferroelectric (AFE) thick film with tetragonal...
In this paper, 0.93PMN-0.07PT thin film shows a giant electrocaloric effect at room temperature. At ...
The multicaloric effects of a PbZr0.2Ti0.8O3 thin film with 90° domain structure at room temperature...
International audienceUsing a phenomenological approach, we demonstrate that a giant mechanically-me...
An electrocaloric (EC) effect is the temperature change accompanied by the change in electric field ...
International audienceStrong electrocaloric effect in lead-free 0.65Ba(Zr 0.2 Ti 0.8)O 3-0.35(Ba 0.7...
Solid state cooling technologies based on electrocaloric, magnetocaloric and mechanocaloric effects ...
The electrocaloric effect of 9/65/35 PLZT thin film fabricated by the sol-gel method, which has not ...
Recently large electrocaloric effects (ΔT = 12 K and ΔS = 8 JK-1kg-1 at 776 kV/cm) in antiferroelect...
The authors have recently observed a giant electrocaloric effect (12 K in 25 V) in 350 nm sol-gel Pb...
The ability to work at ultralow (−90 °C) or ultrahigh (200 °C) temperature with superior energy stor...