Lead-free Ba2Bi4Ti5O18 thin film capacitors for energy storage applications
Author:
Funder
National NSFC
Jiangsu Educational Committee
Scientific Research Foundation of JUST
Publisher
Elsevier BV
Subject
General Physics and Astronomy
Reference22 articles.
1. Homogeneous/Inhomogeneous-Structured Dielectrics and their Energy-Storage Performances
2. Enhanced recoverable energy storage density of Mn-doped Ba0.4Sr0.6TiO3 thin films prepared by spin-coating technique
3. Large Energy Density, Excellent Thermal Stability, and High Cycling Endurance of Lead-Free BaZr0.2Ti0.8O3 Film Capacitors
4. The microstructure, energy storage and dielectric behaviours of (Ti,Zn)-doped Bi0.97Nd0.03FeO3 thin films
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1. Design of High‐Entropy Relaxor Ferroelectrics for Comprehensive Energy Storage Enhancement;Advanced Functional Materials;2024-07-30
2. Band-gap engineering in Aurivillius BaBi4Ti4O15 thin film capacitors for enhanced energy storage performance;Journal of Power Sources;2024-06
3. Effect of annealing temperature on the energy storage properties of Ba(Zr0.35Ti0.65)O3 thin films prepared by sol–gel method;Journal of Materials Science: Materials in Electronics;2024-03
4. Improvement of energy storage performance by controlling the crystallinity of Aurivillius BaBi4Ti4O15 thin films;Journal of the Korean Ceramic Society;2023-07-04
5. Energy storage performances of La doping BaBi4Ti4O15 thin films capacitors;Results in Physics;2023-01
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