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首页> 外文期刊>Ionics >Preparation of Li_(1.5)Al_(0.5)Ti_(1.5)(PO4)3 solid electrolyte via a co-precipitation method
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Preparation of Li_(1.5)Al_(0.5)Ti_(1.5)(PO4)3 solid electrolyte via a co-precipitation method

机译:共沉淀法制备Li_(1.5)Al_(0.5)Ti_(1.5)(PO4)3固体电解质

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摘要

The co-precipitation method can make the materials react uniformly at molecular level and has the advantages of lower polycrystalline synthesized temperature and shorter sintering time. Therefore, it is expected that the mass production of Li_(1.5)Al_(0.5)Ti_(1.5)(PO4)3 (LATP) solid electrolyte would be possible by apphcation of the co-precipitation method for LATP preparation, hi this study, an application of the co-precipitation method for a preparation of LATP solid electrolyte is attempted. Crystallized LATP powder is obtained by heating precipitant containing Li, Al, Ti, and PO4 at 800 °C for 30 min. The LATP bulk sintered pellet is successfully prepared using the crystallized LATP powder by calcinating at 1,050 °C. The cross-sectional SEM images show that many crystal grains exist, and the grains are in good contact with each other, i.e., there is no void space. AH diffraction peaks of the pellet are attributed to LATP in XRD pattern. The sintered pellet is obtained by calcinating at 1,050 °C, which is more than 150 °C lower than that of conventional method. The LATP sohd electrolyte shows a good conductivity which is 1.4 x 10~(-3) S cm~(-1) for bulk and 1.5 x 10~(-4) S cm~(-1) for total conductivities, respectively.
机译:共沉淀法可使材料在分子水平上反应均匀,具有降低多晶合成温度,缩短烧结时间的优点。因此,可以预期通过采用共沉淀法制备LATP可以大量生产Li_(1.5)Al_(0.5)Ti_(1.5)(PO4)3(LATP)固体电解质。在本研究中,尝试将共沉淀方法用于制备LATP固体电解质。通过在800°C下加热包含Li,Al,Ti和PO4的沉淀剂30分钟,可以得到结晶的LATP粉末。通过在1,050°C下煅烧,使用结晶的LATP粉末成功制备了LATP块状烧结块。截面SEM图像显示存在许多晶粒,并且晶粒彼此良好接触,即,没有空隙空间。颗粒的AH衍射峰归因于XRD图谱中的LATP。通过在1050℃下煅烧获得烧结的粒料,其比常规方法低150℃以上。 LATP电解质显示出良好的电导率,散装为1.4 x 10〜(-3)S cm〜(-1),总电导率为1.5 x 10〜(-4)S cm〜(-1)。

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