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Effect of sintering on Electrochemical Impedance of Li4Ti5O12/sodalime composites anode for lithium ceramic battery application

机译:烧结对锂陶瓷电池应用的Li4Ti5O12 /钠复合材料阳极电化学阻抗的影响

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Synthesis of Li4Ti5O12/soda lime silica composites has been carried out for anode component on lithium ceramic battery. The method for synthesis Li4Ti5O12 was SSR (solid state reaction) from Li2CO3 and TiO2 powders. All lithium based material was calcined at 700°C for 2 hours, then ball milling to achieve the particles finer and pass through to the filter of less than 400 mesh. Prior to sintering the powders were soluted in 99% methanol to make paste. Li4Ti5O12 paste was sintered at various temperature from 750°C, 800°C, 850°C, 900°C to 950°C for 2 hours to obtained the optimum electrical properties. The phases formed after sintering were identified by XRD. The conductivity in grain and grain boundary were obtained by AC Electrochemical Impedance Spectroscopy (EIS) and it is found that the optimum conductivity was ∼ 1.0 10−7 S/cm after sintering at 850°C for 2 hours.
机译:Li4Ti5O12 / SODA石灰二氧化硅复合材料的合成已经在锂陶瓷电池上进行了阳极组分。合成Li4Ti5O12的方法是来自Li 2 CO 3和TiO2粉末的SSR(固态反应)。将所有基于锂的材料在700℃下煅烧2小时,然后球磨以实现颗粒更细并通过到过滤器的过滤器小于400目。在烧结之前,将粉末溶于99%甲醇以制造糊状物。 Li4Ti5O12浆料在750℃,800℃,850℃,900℃至950℃的各种温度下烧结2小时以获得最佳电性能。通过XRD鉴定烧结后形成的相。通过AC电化学阻抗光谱(EIS)获得晶粒和晶界的电导率,发现在850℃下烧结2小时后,最佳导电率为〜1.010 -7 / s / cm 。

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