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Influence of B_2O_3 doping on conductivity of LiTiO_2 electrode material

机译:B_2O_3掺杂对LiTiO_2电极材料电导率的影响

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Fast ionic conductors X LiTiO_2-Y B_2O_3 with X:Y = 90:10 and 80:20 are prepared by the solid-state reaction method and subjected to ac conductivity measurements with silver electrodes in the frequency range 42 Hz to 5 MHz. The ac conductivity values are 6.47 x 10~(-5) and 2.2 x 10~(-7) Ω~(-1) cm~(-1), respectively. The ion hopping rate and charge carrier concentration are calculated by fitting the conductance spectra to the power law equation, using Almond and West formalisms. The charge carrier concentration is in the order of 10~(25) and is independent of temperature, which supports the strong electrolyte model. The conductivity relaxation time is calculated from the peak frequency of the modulus spectra. The effect of B_2O_3 substitution is discussed.
机译:通过固态反应方法制备具有X:Y = 90:10和80:20的快速离子导体X LiTiO_2-Y B_2O_3,并使用银电极在42 Hz至5 MHz的频率范围内进行交流电导率测量。交流电导率分别为6.47 x 10〜(-5)和2.2 x 10〜(-7)Ω〜(-1)cm〜(-1)。使用Almond和West形式论,通过将电导谱与幂律方程拟合来计算离子跳跃速率和电荷载流子浓度。载流子浓度约为10〜(25),且与温度无关,这支持强电解质模型。由模量谱的峰值频率计算电导率弛豫时间。讨论了B_2O_3取代的作用。

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