T. Tsurumi, T. Teranishi, S. Wada, H. Kakemoto, M. Nakada, J. Akedo
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引用次数: 4
摘要
ABO3钙钛矿型氧化物的介电性能随b位阳离子的变化而显著变化。在本研究中,我们试图通过测量SrTiO3 (STO, epsivr= 290, Qf = 3,000 GHz)和SrZrO3 (SZO, epsivr= 30, Qf = 13,700 GHz)的固溶体在宽频率范围内的介电光谱来了解它们之间介电性能的差异。采用平面电极法和环形谐振器法测定了SrZrxTi1-xO3 (STZ, 0.0 les x les 1.0)陶瓷在GHz范围内的介电常数和损耗正切(tan delta)。采用四参数半量子(FPSQ)模型分析了STZ陶瓷的红外反射率(IR reflectivity)数据。为了准确地确定光学声子参数,在分析中考虑了GHz区域的介电特性和太赫兹区域的红外反射率。研究了STZ陶瓷和STO单晶的超宽带介电光谱。离子极化是决定STZ陶瓷和STO单晶介电常数的主要因素。STO的高介电常数是由Slater模式引起的。随着Zr含量(x)的增加,STZ陶瓷的介电常数和q因子(= 1/tan δ)的降低是由于Slater模式的抑制。模拟了光学声子参数对微波区介电常数和tan δ的影响,以推广STZ陶瓷的结果。
Wide Range Dielectric Spectroscopy of SrTiO3-SrZrO3 Solid Solution
The dielectric property varies significantly with the B-site cations in ABO3 perovskite-type oxides. In this study, we tried to understand the difference in the dielectric properties between SrTiO3 (STO, epsivr= 290, Qf = 3,000 GHz) and SrZrO3 (SZO, epsivr= 30, Qf = 13,700 GHz) by measuring dielectric spectroscopy of their solid solutions in a wide frequency range. The dielectric permittivity and the loss tangent (tan delta) of SrZrxTi1-xO3 (STZ, 0.0 les x les 1.0) ceramics were evaluated up to GHz region using planer electrode method and ring resonator method. The four-parameter-semi-quantum (FPSQ) model was employed to analyze the infrared-reflectivity (IR reflectivity) data of STZ ceramics. Both dielectric properties up to GHz region and IR reflectivity in THz region were incorporated in the analysis to accurately determine the optical phonon parameters. Ultra wide band dielectric spectra of STZ ceramics and STO single crystal were presented. The ionic polarization dominantly determined the dielectric permittivity of STZ ceramics and STO single crystal. High permittivity of STO was due to the Slater mode. The decrease of dielectric permittivity and Q-factor (= 1/tan delta) with increasing Zr content (x) in STZ ceramics was attributed to the depression of the Slater mode. The effect of optical phonon parameters on the permittivity and tan delta in microwave region was simulated to generalize the results obtained for STZ ceramics.