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Effect of La_2O_3-Dopant on Microstructure and Microwave Dielectric Properties of CaO-MgO-Nb_2O_5-TiO_2 System Ceramics

Effect of La_2O_3-Dopant on Microstructure and Microwave Dielectric Properties of CaO-MgO-Nb_2O_5-TiO_2 System Ceramics
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摘要 La_2O_3-doped CaO-MgO-Nb_2O_5-TiO_2 system ceramics were prepared by solid-state ceramic technique. The microstructure and microwave dielectric properties of CaO-MgO-Nb_2O_5-TiO_2-La_2O_3 ceramics can be adjusted by varying the amount of La^(3+) ions. The results show that the replacement of Ca^(2+) by La^(3+) at A-site of the ceramics can increase the quality factor Q·f value as well as the temperature coefficient of resonant frequency τ_f and decrease the dielectric constant ε_r. With increase of La^(3+) contents, the dielectric constant decreases from 57 to 35 and Q·f value increases from 33400 GHz to 35000 GHz (at 7.6 GHz). Meanwhile, the temperature coefficient of resonant frequency is improved towards near zero. The dielectric properties of these compounds are related to octahedra tilting due to deficient vacancies at A-site. La_2O_3-doped CaO-MgO-Nb_2O_5-TiO_2 system ceramics were prepared by solid-state ceramic technique. The microstructure and microwave dielectric properties of CaO-MgO-Nb_2O_5-TiO_2-La_2O_3 ceramics can be adjusted by varying the amount of La^(3+) ions. The results show that the replacement of Ca^(2+) by La^(3+) at A-site of the ceramics can increase the quality factor Q·f value as well as the temperature coefficient of resonant frequency τ_f and decrease the dielectric constant ε_r. With increase of La^(3+) contents, the dielectric constant decreases from 57 to 35 and Q·f value increases from 33400 GHz to 35000 GHz (at 7.6 GHz). Meanwhile, the temperature coefficient of resonant frequency is improved towards near zero. The dielectric properties of these compounds are related to octahedra tilting due to deficient vacancies at A-site.
出处 《Journal of Rare Earths》 SCIE EI CAS CSCD 2005年第1期32-35,共4页 稀土学报(英文版)
基金 Project supported by the National Science Foundation (50272044) of China
关键词 inorganic nonmetallic materials PEROVSKITE microwave dielectric ceramics dielectric properties rare earths inorganic nonmetallic materials perovskite microwave dielectric ceramics dielectric properties rare earths
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  • 1Kagata H,Kato J.Microwave dielectric properties of Ca-based complex perovskite at microwave frequencies[].Japanese Journal of Applied Physics.1994
  • 2Kim I S,Jung W H,Inaguma Y.Dielectric properties of A-site deficient perovskite-type lanthanum-calcuium-titanium oxide solid solution system (1 - x ) La2/3 TiO3-x CaTiO3[].Materials Research Bulletin.1995
  • 3Courtney W E.Analysis and evaluation of a method of measuring the complex permittivity and permeability of microwave insulators[].IEEE Trans Microwave Theory& Tech.1970
  • 4Fiedziuszko S,Hunter Ian,Tatsuo Itoh.Microwave devices and circuits[].IEEE Trans Microwave Theory& Tech.2002
  • 5Huang C L,Chen H L,Wu C C.Improved high Q value of CaTiO3-Ca (Mg1/3 Nb2/3 )O3 solid solution with near zero temperature coefficient of resonant frequency[].Materials Research Bulletin.2001
  • 6Park H S,Yoon K H,Kim E S.Effect of bond valence on microwave dielectric properties of complex perovskite ceramics[].Journal of Materials Chemistry.2003
  • 7Ishizaki T,Fujita M,Kagata H.A very small dielectric planar filter for portable telephones[].IEEE TransMicrowave Theory &Tech.1994

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