Structure and Electrical Conductivity of Compositely Doped Oxide Solid Electrolyte La_(0.8)Sr_(0.2)G

来源 :Journal of Rare Earths | 被引量 : 0次 | 上传用户:yuan002003
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(La,Sr)(Ga, Mg)O3-δ, (LSGM) perovskite compositions doped with transition metal Co on the B-site were prepared by solid state reaction. The effect of partial substitution of Ga for Co, La0.8Sr0.2Ga0.8Mg0.12Co0.08O2.8 (LSGMC2008) on the electrical conductivity was discussed. The results showed the compacted samples sintered at 1350 ℃ possesses increased electrical conductivity at low temperatures. The XRD patterns of the title materials indicated that LSGMC2008 possessed orthorhombic perovskite-type structure. The grains distributed relatively uniform from SEM photo. The Arrhenius plots of ionic conductivity in air of the LSGMC2008 exhibited differing slopes in the low-and high-temperature regions, and the corresponding Ea values were much lower than that of LSGM2020. All of these suggested that even at low sintering temperature, proper amount Co doped was beneficial to improve ionic conductivity of LSGM. (La, Sr) (Ga, Mg) O3-δ, (LSGM) perovskite compositions doped with transition metal Co on the B-site were prepared by solid state reaction. The effect of partial substitution of Ga for Co, La0.8Sr0. The results showed the compacted samples sintered at 1350 ° C possesses increased electrical conductivity at low temperatures. The XRD patterns of the title materials indicated that LSGMC2008 possessed orthorhombic perovskite The Arrhenius plots of ionic conductivity in air of the LSGMC 2008 study differing slopes in the low-and high-temperature regions, and the corresponding Ea values ​​were much lower than that of LSGM2020. All of these suggested that even at low sintering temperature, proper amount of Co doped was beneficial to improve ionic conductivity of LSGM.
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