Scinovex
articleTop 1% cited

Lead‐Free Relaxor Ferroelectrics

Journal of the American Ceramic Society · 2011 · Vol. 95(1) · pp. 1–26
Vladimir V. ShvartsmanDoru C. Lupascu

Abstract

Feature size is a natural determinant of material properties. Its design offers the technological perspectives for material improvement. Grain size, crystallite size, domain width, and structural defects of different nature constitute the classical design elements. Common ferroelectric ceramics contain micrometer grain sizes and submicrometer domain widths. Domain wall mobility is a major contribution to their macroscopic material properties providing approximately half of the macroscopic output in optimized materials. The extension into the dynamic nanoworld is provided by relaxor ferroelectrics. Ionic and nanoscale field disorders form the base to a state with natural nanometer‐size polar structures even in bulk materials. These polar structures are highly mobile and can dynamically change over several orders of magnitude in time and space being extremely sensitive to external stimuli. This yields among the largest dielectric and piezoelectric constants known. In this feature article, we want to outline how lead‐free relaxors will offer a route to an environmentally safer option in this outstanding material class. Properties of uniaxial, planar, and volumetric relaxor compositions will be discussed. They provide a broader and more interesting scope of physical properties and features than the classical lead‐containing relaxor compositions.

Ferroelectric and Piezoelectric MaterialsMultiferroics and related materialsAcoustic Wave Resonator TechnologiesMaterials scienceDielectricGrain sizePiezoelectricityCeramicFerroelectricityCrystalliteNanotechnologyGranular materialCondensed matter physics
Citations
975
FWCI
16.00
field-weighted impact
References
279
Percentile
100%
vs. same field & year
Citations per year
Cited by
Transferring lead-free piezoelectric ceramics into application
Journal of the European Ceramic Society · 2015 · 1,272 citations
References
The relaxational properties of compositionally disordered ABO<sub>3</sub>perovskites
Journal of Physics Condensed Matter · 2003 · 794 citations
The chain structure of BaTiO3 and KNbO3
Solid State Communications · 1968 · 630 citations
Glassy polarization behavior in ferroelectric compounds and
Solid State Communications · 1983 · 685 citations
Current Developments and Prospective of Lead-Free Piezoelectric Ceramics
Japanese Journal of Applied Physics · 2008 · 424 citations
Perspective on the Development of Lead‐free Piezoceramics
Journal of the American Ceramic Society · 2009 · 2,887 citations
The crystal chemistry underlying ferroelectricity in Bi4Ti3O12, Bi3TiNbO9, and Bi2WO6
Journal of Solid State Chemistry · 1991 · 321 citations
A family of ferroelectric bismuth compounds
Journal of Physics and Chemistry of Solids · 1962 · 1,035 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.