Giant Negative and Positive Electrocaloric Effects Coexisting in Lead-Free Na0.5 Bi4.5 Ti4 O15 Films Over a Broad Temperature Range
Author:
Affiliation:
1. Inner Mongolia Key Laboratory of Nanoscience and Nanotechnology, Inner Mongolia University; Hohhot 010021 P.R. China
Funder
National Natural Science Foundation of China
Publisher
Wiley
Subject
Condensed Matter Physics,General Materials Science
Reference31 articles.
1. Electrocaloric Materials
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5. Flexible control of positive and negative electrocaloric effects under multiple fields for a giant improvement of cooling capacity
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1. Giant negative electrocaloric effect over a wide temperature region (263–373 K) in lead-free BiFeO3/B4Ti3O12 composite films;Journal of Physics and Chemistry of Solids;2023-01
2. Electrocaloric and energy storage properties of sol-gel derived lanthanum doped PZT thick films;Materials Science in Semiconductor Processing;2022-11
3. Twin‐Peak Electrocaloric Effect in Ferroelectric Phase of Diffusive SrBi 1.98 La 0.02 Nb 2− x Ta x O 9 Materials;physica status solidi (b);2021-08-21
4. Ultrahigh Energy Storage Performances Induced by Weaker La–O Orbital Hybridization in (Na0.85K0.15)0.5Bi4.5 – xLaxTi4O15 Relaxor Ferroelectric Films;The Journal of Physical Chemistry C;2021-03-03
5. Progress and Perspectives on Aurivillius-Type Layered Ferroelectric Oxides in Binary Bi4Ti3O12-BiFeO3 System for Multifunctional Applications;Crystals;2020-12-29
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