DocumentCode
2194550
Title
Crystallization Kinetics of Barium Strontium Titanate Glass-Ceramics
Author
Gorzkowski, E.P. ; Pan, M.J. ; Bender, B. ; Wu, C.C.M.
Author_Institution
Naval Res. Lab., Washington
fYear
2006
fDate
July 30 2006-Aug. 3 2006
Firstpage
21
Lastpage
24
Abstract
Barium strontium titanate has been targeted as one potential ferroelectric glass-ceramic for high energy density dielectric materials. Previous testing has shown that the dielectric constant of these materials was as high as 1000 and dielectric breakdown strength up to 800 kV/cm. This did not, however, result in exceptional energy density (~ 0.90 J/cm3). In order to increase overall energy density refining agents can be added to the melt, but the nucleation and growth of the ceramic particles can also play a role. Therefore, in this study the crystallization kinetics were observed to more fully understand how the barium strontium titanate (BST) phase forms so that the optimal energy density could be achieved. It was found that the activation energy was 400 -430 kJ/mol, while the average Avrami parameter was 2.2 -2.5 for BST 70/30 with various additives. The activation energy is close to the disassociation of the Si-O bonds, while crystallization most likely occurs in the bulk with the mechanism of growth being interface controlled.
Keywords
additives; barium compounds; crystallisation; dissociation; electric breakdown; ferroelectric ceramics; glass ceramics; permittivity; strontium compounds; Avrami parameter; BaSrTiO3; activation energy; additives; crystallization kinetics; dielectric breakdown; dielectric constant; disassociation; energy density; ferroelectric glass ceramic; Barium; Binary search trees; Crystallization; Dielectric constant; Dielectric materials; Ferroelectric materials; Kinetic theory; Materials testing; Strontium; Titanium compounds; BST; Capacitors; High Energy Density;
fLanguage
English
Publisher
ieee
Conference_Titel
Applications of ferroelectrics, 2006. isaf '06. 15th ieee international symposium on the
Conference_Location
Sunset Beach, NC
ISSN
1099-4734
Print_ISBN
978-1-4244-1331-7
Electronic_ISBN
1099-4734
Type
conf
DOI
10.1109/ISAF.2006.4387823
Filename
4387823
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