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Preparation of Nanometer La1- xSrxMnO3 and Application in Air-Cathode

机译:纳米LA1- XSRXMNO3的制备及在空气阴极中的应用

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The nanometer La1-xSrxMnO3 perovskite catalyst was prepared by sol-gel method. The optimum conditions of material preparation were gained by studying the effect of process parameters, such as pH value, temperature of water bath, drying method of gel and the sintering mode of sol, on the crystal structure of the nanometer La1-xSrxMnO3. The average diameter of the La1- xSrx MnO3 catalysts is 20 ~ 50 nm. The softly congregated nanometer La1- xSrx MnO3 could be separated by ultrasonic and loaded on active carbon uniformly, thus the properties of air cathode was improved significantly. The influence of doping Sr on the catalytic performance was studied by measuring the steady-state polarization curve of the air cathode. It was found that doping Sr would induce the deformation of La1- xSrx MnO3 lattice, and the main factors affecting the catalyst's performance were concentration of oxygen vacancies in the crystal, the ratio of Mn4 +/Mn3 + and the variation of La1 -xSrx MnO3 paramagnetism. The result showed that the catalytic performance of La1- x SrxMnO3 increased with the amount of doping Sr initially, and the performance was the best at x = 0.4, then decreased. The current density reached 324 mA·cm-2 at -200 mV vs Hg/HgO while electrolyte was alkaline solution at room temperature.
机译:通过溶胶 - 凝胶法制备纳米LA1-XSRXMNO3钙钛矿催化剂。通过研究工艺参数,例如pH值,水浴温度,凝胶温度,溶胶的烧结模式的pH值,温度和溶胶的烧结模式的效果来获得最佳材料制剂的最佳条件。纳米LA1-XSRXMNO3的晶体结构。 LA1-XSRX MNO3催化剂的平均直径为20〜50nm。可通过超声波分离柔和地聚集的纳米LA1-XSRX MNO3并均匀地装载在活性炭上,因此显着提高了空气阴极的性质。通过测量空气阴极的稳态偏振曲线研究掺杂SR对催化性能的影响。发现掺杂SR会诱导La1-Xsrx MnO3格的变形,影响催化剂性能的主要因素是晶体中氧空位的浓度,Mn4 + / Mn3 +的比例和La1 -XSRX MnO3的变化。 paramiagnetism。结果表明,La1-x SRXMNO3的催化性能最初随着掺杂Sr的量而增加,并且性能最好在x = 0.4时,然后降低。电解质在室温下碱性溶液达到-200mV与Hg / hg达324mA·cm-2。

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