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Chinese Physics, 2005, Vol. 14(8): 1657-1664    DOI: 10.1088/1009-1963/14/8/035
CONDENSED MATTER: ELECTRONIC STRUCTURE, ELECTRICAL, MAGNETIC, AND OPTICAL PROPERTIES Prev   Next  

Effective dielectric response of graded composite materials containing anisotropic particles

Sang Zhi-Fang (桑芝芳)a, Li Zhen-Ya (李振亚)ab
a Department of Physics, Suzhou University, Suzhou 215006, China; b CCAST (World Laboratory ), P. O. Box 8730, Beijing 100080, China
Abstract  The effective dielectric response of granular composites, in which spheroidal particles with graded shells are randomly distributed in a host matrix, is investigated. General expressions for the effective dielectric constant of the composites and partial resonant condition are obtained in the dilute limit by use of a quasi-static approximation. In particular, spheroidal particles with a power-law gradation profile in the shells are studied in detail. We find that, by adjusting the dielectric gradient profile in the shells, the shape and structure of particles, it is possible to enhance the effective dielectric constant of the composite and to realize partial resonance. Under the partial resonant conditions, the coated spheroidal particles with graded shells within the host matrix can be regarded as equivalent homogeneous spheroids embedded in the same host. The equivalent spheroids have the same dielectric constant as the original cores and semiaxes equal to those of the original shells: i.e., the partial resonant system behaves as if the cores of the particles were enlarged and the shells were absent.
Keywords:  effective dielectric response      partial resonance      graded composite materials      geometric anisotropy  
Received:  16 December 2004      Revised:  07 March 2005      Accepted manuscript online: 
PACS:  77.22.Ch (Permittivity (dielectric function))  
  77.84.Lf (Composite materials)  
Fund: Project supported by the National Natural Science Foundation of China (Grant No 10474069).

Cite this article: 

Sang Zhi-Fang (桑芝芳), Li Zhen-Ya (李振亚) Effective dielectric response of graded composite materials containing anisotropic particles 2005 Chinese Physics 14 1657

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