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Articles

Synthesis, microstructure and microwave dielectric properties of Li2Mg3SnO6 ceramics with excess lithium

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Pages 105-111 | Received 19 Apr 2018, Accepted 17 Sep 2018, Published online: 13 May 2019

References

  • M. T. Sebastian , Dielectric Materials for Wireless Communication (Academic Press, Elsevier, Amsterdam, 2010).
  • B. D. Silverman , Microwave absorption in cubic strontium titanate, Phys. Rev. 125 (6), 1921 (1962).
  • A. V. Hippel , Dielectric Materials and Applications (Technology Press of M.I.T., Cambridge, MA, 1954).
  • L. X. Pang , and D. Zhou , Microwave dielectric properties of low-firing Li2 MO3 (M = Ti, Zr, Sn) ceramics with B2O3-CuO addition, J. Am. Ceram. Soc. 93 (11), 3614 (2010).
  • S. George , and M. T. Sebastian , Synthesis and microwave dielectric properties of novel temperature stable high Q, Li2ATi3O8 (A = Mg, Zn) ceramics, J. Am. Ceram. Soc. 93 (8), 2164 (2010).
  • Q. Zeng , et al. , A new microwave dielectric ceramic for LTCC applications, J. Am. Cera. Soc. 89 (5), 1733 (2006).
  • J. L. Ma , et al. , Microwave dielectric properties of low-fired Li2ZrO3-ZnO composite ceramics, J. Mater. Sci: Mater. Electron. 27 (1), 232 (2016).
  • J. J. Bian , and Y. F. Dong , New high Q microwave dielectric ceramics with rock salt structures: (1-x)Li2TiO3 + xMgO system (0 ≤ x ≤ 0.5), J. Eurp. Ceram. Soc. 30 (2), 325 (2010).
  • Z. Fang , et al. , Temperature stable and high-Q microwave dielectric ceramics in the Li2Mg3-xCaxTiO6 system (x = 0.00-0.18), Cermic. Inter. 43 (2), 1682 (2017).
  • J. Hauck , Short-range order and superstructures of ternary oxides AMO2, A2MO3 and A5MO6 of monovalent A and multivalent M metals related to the NaCl structure, Acta Cryst. A. 36 (2), 228 (1980).
  • Z. F. Fu , et al. , Novel series of ultra-low loss microwave dielectric ceramics: Li2Mg3BO6 (B = Ti, Sn, Zr). J. Europ. Ceram. Soc. 36 (3), 625 (2016).
  • J. L. Ma , et al. , Ultralow-fired Li2Mg3TiO6-Ca0.8Sr0.2TiO3 composite ceramics with temperature stable at microwave frequency, J. Alloy. Comp. 709, 299 (2017).
  • Z. F. Fu , J. L. Ma , and P. Liu , A novel temperature-stable and low-loss microwave dielectric composite ceramics Li2Mg3SnO6-SrTiO3 , Mater. Lett. 218, 135 (2018).
  • Z. Fang , et al. , Phase evolution, structure and microwave dielectric properties of Li2+xMg3SnO6 (x= 0.00–0.12) ceramics, Ceram. Inter 43 (16), 13645 (2017).
  • H. Wu , and E. S. Kim , Correlation between crystal structure and dielectric properties of high-Q materials in rock-salt structure Li2O-MgO-BO2 (B = Ti, Sn, Zr) systems at microwave frequency, RSC Adv. 6 (53), 47443 (2016).
  • Y. X. Mao , et al. , Effects of LiF addition on the sintering behavior and microwave dielectric properties of Li2Mg3SnO6 ceramics, J. Mater. Sci: Mater. Electron. 28 (18), 13278 (2017).
  • R. Zuo , et al. , Liquid-phase sintering, microstructural evolution and microwave dielectric properties of Li2Mg3SnO6-LiF ceramics, J. Am. Ceram. Soc. 101 (2), 569 (2018).
  • Y. Z. Hao , et al. , Microwave dielectric properties of Li2TiO3 ceramics doped with LiF for LTCC applications, J. Alloys. Compd. 552, 173 (2013).
  • J. J. Bian , and Y. F. Dong , Sintering behavior, microstructure and microwave dielectric properties of Li2+xTiO3 (0≤ x≤ 0.2), Mater. Sci. Eng.: B. 176 (2), 147 (2011).
  • J. Song , J. Zhang , and R. Z. Zuo , Ultrahigh Q values and atmosphere-controlled sintering of Li2(1+x)Mg3ZrO6 microwave dielectric ceramics, Ceram. Inter. 43 (2), 2246 (2017).
  • B. G. Dick, Jr , and A. W. Overhauser , Theory of the Dielectric Constants of Alkali Halide Crystals, Phys. Rev. 112 (1), 90 (1958).
  • H. Tamura , Microwave dielectric losses caused by lattice defects, J. Eur. Ceram. Soc. 26 (10–11), 1775 (2006).
  • I. M. Reaney , et al. , On the temperature coefficient of resonant frequency in microwave dielectrics, Philosophical Magazine A. 81 (2), 501 (2001).

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