Microwave dielectric properties of CaCu3Ti4O12 ceramics: A clue to its intrinsic dielectric response

Author:

Huang X.12,Guo H.X.1,Zhu P.S.1,Liu L.1,Xiao J.1,Tang D.P.3,Lin C.1,Wu X.1,Zheng X.H.1ORCID

Affiliation:

1. Institute of Advanced Ceramics, College of Materials Science and Engineering, Fuzhou University, 2 Xueyuan Road, University Town, Fuzhou 350108, P. R. China

2. School of Mechanical and Automotive Engineering, Fujian University of Technology, 3 Xueyuan Road, University Town, Fuzhou 350118, P. R. China

3. College of Zijin Mining, Fuzhou University, 2 Xueyuan Road, University Town, Fuzhou 350108, P. R. China

Abstract

CaCu3Ti4[Formula: see text] (CCTO) is a potential dielectric material with giant permittivity, good stability over the wide temperature and frequency range. However, the dielectric responses of CCTO-based ceramics are mainly investigated in the frequency of 10 2–106 Hz, which is far low to clarify the intrinsic dielectric feature. So, microwave dielectric properties have been investigated for the CCTO porous ceramics sintered at low temperature ([Formula: see text]1000[Formula: see text]C). Good microwave dielectric properties of permittivity [Formula: see text] = 62.7, quality factor Qf = 3062 GHz and temperature coefficient of the resonant frequency [Formula: see text][Formula: see text] = 179 ppm/[Formula: see text]C are achieved for the CCTO ceramics sintered at 1000[Formula: see text]C, the dielectric loss significantly decreases two orders to 0.002 compared to that of CCTO ceramics sintered at critical temperature of 1020[Formula: see text]C confirmed by differential scanning calorimetry (DSC). This clue indicates that giant permittivity and high loss is not intrinsic for CCTO ceramics, but derives from composition segregation, liquid phase and defects associated with internal barrier layer capacitor (IBLC). It suggests that CCTO-based ceramics is a promising microwave dielectric materials with high permittivity.

Funder

National Natural Science Foundation of China

Publisher

World Scientific Pub Co Pte Ltd

Subject

Electrical and Electronic Engineering,Condensed Matter Physics,Ceramics and Composites,Electronic, Optical and Magnetic Materials

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