Ferroelectric Ceramics: History and Technology

Ферроэлектрическая керамика: история и технологии
Gene H. Haertling
1999-04-01

barium titanateferroelectric ceramicslead zirconate titanate (PZT)piezoelectric transducersthin and thick films for piezoelectric applications
Ferroelectric ceramics were born in the early 1940s with the discovery of the phenomenon of ferroelectricity as the source of the unusually high dielectric constant in ceramic barium titanate capacitors. Since that time, they have been the heart and soul of several multibillion dollar industries, ranging from high‐dielectric‐constant capacitors to later developments in piezoelectric transducers, positive temperature coefficient devices, and electrooptic light valves. Materials based on two compositional systems, barium titanate and lead zirconate titanate, have dominated the field throughout their history. The more recent developments in the field of ferroelectric ceramics, such as medical ultrasonic composites, high‐displacement piezoelectric actuators (Moonies, RAINBOWS), photostrictors, and thin and thick films for piezoelectric and integrated‐circuit applications have served to keep the industry young amidst its growing maturity. Various ceramic formulations, their form (bulk, films), fabrication, function (properties), and future are described in relation to their ferroelectric nature and specific areas of application.
1
Ferroelectric ceramics have enabled multibillion-dollar industries including high-dielectric capacitors, piezoelectric transducers, PTC devices, and electrooptic light valves.
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Ferroelectric ceramics were discovered in the early 1940s and explained the high dielectric constant of barium titanate capacitors.
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Recent developments include medical ultrasonic composites, high-displacement piezoelectric actuators (Moonies, RAINBOWS), photostrictors, and thin/thick films for piezoelectric and integrated-circuit applications.
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The paper reviews ceramic formulations, forms (bulk and films), fabrication, properties, and future prospects in relation to ferroelectric behavior and applications.
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Two compositional systems—barium titanate and lead zirconate titanate—have dominated ferroelectric ceramics historically.

Ferroelectric ceramics (including barium titanate and lead zirconate titanate materials in bulk, thin- and thick-film forms)

Their materials, formulations, fabrication, forms and functional properties (dielectric, piezoelectric, electrooptic, photostrictive, temperature-dependent behaviors) and applications across capacitors, transducers, actuators, PTC devices and integrated devices

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1999-04-01
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Gene H. Haertling
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