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CaCu 3 Ti 4 O 12 : One-step internal barrier layer capacitor

Applied Physics Letters · 2002 · Vol. 80(12) · pp. 2153–2155
Derek C. SinclairTimothy B. AdamsFinlay D. MorrisonAnthony R. West

Abstract

There has been much recent interest in a so-called “giant-dielectric phenomenon” displayed by an unusual cubic perovskite-type material, CaCu3Ti4O12; however, the origin of the high permittivity has been unclear [M. A. Subramanian, L. Dong, N. Duan, B. A. Reisner, and A. W. Sleight, J. Solid State Chem. 151, 323 (2000); C. C. Homes, T. Vogt, S. M. Shapiro, S. Wakimoto, and A. P. Ramirez, Science 293, 673 (2001); A. P. Ramirez, M. A. Subramanian, M. Gardel, G. Blumberg, D. Li, T. Vogt, and S. M. Shapiro, Solid State Commun. 115, 217 (2000)]. Impedance spectroscopy on CaCu3Ti4O12 ceramics demonstrates that they are electrically heterogeneous and consist of semiconducting grains with insulating grain boundaries. The giant-dielectric phenomenon is therefore attributed to a grain boundary (internal) barrier layer capacitance (IBLC) instead of an intrinsic property associated with the crystal structure. This barrier layer electrical microstructure with effective permittivity values in excess of 10 000 can be fabricated by single-step processing in air at ∼1100 °C. CaCu3Ti4O12 is an attractive option to the currently used BaTiO3-based materials which require complex, multistage processing routes to produce IBLCs of similar capacity.

Dielectric properties of ceramicsFerroelectric and Piezoelectric MaterialsMultiferroics and related materialsGrain boundaryMaterials sciencePermittivityBarrier layerDielectricCapacitanceDielectric spectroscopyDielectric permittivityPerovskite (structure)Capacitor
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References
Giant dielectric constant response in a copper-titanate
Solid State Communications · 2000 · 1,097 citations
High Dielectric Constant in ACu3Ti4O12 and ACu3Ti3FeO12 Phases
Journal of Solid State Chemistry · 2000 · 2,059 citations
Electroceramics: Characterization by Impedance Spectroscopy
Advanced Materials · 1990 · 2,656 citations
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