Evolution of phase structure, microstructure, and electrical properties in (1−x)(K,Na)NbO3–x(Bi,Na,Li,Ba)ZrO3 lead-free ceramics
Author:
Funder
Sichuan University, China
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference20 articles.
1. Ferroelectric Ceramics: History and Technology
2. Large Piezoelectric Constant and High Curie Temperature of Lead-Free Piezoelectric Ceramic Ternary System Based on Bismuth Sodium Titanate-Bismuth Potassium Titanate-Barium Titanate near the Morphotropic Phase Boundary
3. Large Piezoelectric Effect in Pb-Free Ceramics
4. Role of room-temperature phase transition in the electrical properties of (Ba, Ca)(Ti, Zr)O3 ceramics
5. Lead-free piezoceramics
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1. Giant piezoelectric response and structure evolution of Bi0.5(Na0.3K0.3Li(0.4-)Ba )0.5ZrO3 modified (K0.48Na0.52)(Nb0.95Sb0.05)O3 lead-free piezoelectric ceramics;Ceramics International;2024-05
2. The high nano-domain improves the piezoelectric properties of KNN lead-free piezo-ceramics;Ceramics International;2023-08
3. High piezoelectric and dielectric constant of Fe/In Co‐doped KNN‐based ceramics regulated by lattice distortion;International Journal of Applied Ceramic Technology;2023-07-10
4. The effect of (Bi0.5Li0.5)0.9Sr0.1ZrO3 substitution on the construction of polymorphic phase boundary and high curie temperature of K0.45Na0.55NbO3 piezoelectric ceramics;Journal of Materials Science: Materials in Electronics;2023-04
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