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Syntheses of La_(1-x)Sr_xMnO_3 Nanopowders by Hydrothermal Method

机译:水热法合成La_(1-x)Sr_xMnO_3纳米粉

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Lanthanum strontium manganese, LSM, has been considered as one of the most prospect materials for solid oxide fuel cell (SOFC) applications due to its high electrode activity for the oxygen reduction reaction, high electronic conductivity and chemical as well as mechanical compatibility with the established solid electrolytes. In this work, Sr-doped LaMnO_3 was synthesized by hydrothermal method and the effect of Sr doping on lanthanum manganese (LSM) was investigated. The La_(1-x)Sr_xMnO_3 (0≤x≤0.4) nanopowders were prepared under different reaction conditions by hydrothermal syntheses. The synthesized nanopowders were characterized the crystalline by X-ray diffraction. The microstructure and particle size of the nanopowders were analyzed by FE-SEM and intercept method. The particles size of LSM powders was approximately ~170 nm when used KOH as a precipitant. The relative density of LSM was over 97% by Archimedes density method. The electrical conductivity of the sintered pellet was measured at 750°C in air by DC four point probe method, and the electrical conductivity was 21.3~63.85 S/cm. The physical and electrical properties of Sr-doped lanthanum manganese were discussed.
机译:镧锶锰(LSM)被认为是固体氧化物燃料电池(SOFC)应用的最有前景的材料之一,因为它对氧还原反应具有很高的电极活性,高的电子电导率和化学性质以及与已建立的机械相容性固体电解质。本文通过水热法合成了掺Sr的LaMnO_3,研究了掺Sr对镧锰的影响。通过水热合成法在不同的反应条件下制备了La_(1-x)Sr_xMnO_3(0≤x≤0.4)纳米粉。合成的纳米粉通过X射线衍射表征结晶。纳米粉末的微观结构和粒度通过FE-SEM和拦截方法进行了分析。当使用KOH作为沉淀剂时,LSM粉末的粒径约为〜170 nm。用阿基米德密度法测得的LSM的相对密度超过97%。用DC四点探针法在空气中750℃下测定了烧结颗粒的电导率,电导率为21.3〜63.85S / cm。讨论了掺锶镧锰的物理和电学性质。

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