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首页> 外文期刊>Electrochimica Acta >Sintering Mechanisms of High-Performance Garnet-type Solid Electrolyte Densified by Spark Plasma Sintering
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Sintering Mechanisms of High-Performance Garnet-type Solid Electrolyte Densified by Spark Plasma Sintering

机译:火花等离子体烧结致密的高性能石榴石型固体电解质的烧结机理

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摘要

Garnet-type solid electrolyte Li6.5La3Zr15Ta0.5O12 (LLZT) was densified by using a spark plasma sintering (SPS) technique. Formation of impurities in the obtained pellets was studied in detail. It is revealed that impurities are strongly related to the SPS process: electrolysis of LLZT and electromigration of graphite. The electrolysis results in La2Zr2O7 on anode of the SPS process, which is accompanied by reduction of Li2CO3 to amorphous carbon on cathode. The electrolysis on SPS could be successfully suppressed by employing LLZT powder without Li2CO3. When these impurities were removed, pellets obtained by SPS exhibited electrochemical performance comparable with those densified by other methods total ionic conductivity of 6.9 x 10(-4) S cm(-1) at 298 K and short-circuit prevention up to 100 mu A cm(-2) on dc polarization. The results confirm great advantage of SPS on manufacturing the dense garnet-type solid electrolytes: a low-temperature (900-1100 degrees C) and short-sintering-time process (10 min). (C) 2016 Elsevier Ltd. All rights reserved.
机译:石榴石型固体电解质Li6.5La3Zr15Ta0.5O12(LLZT)通过使用火花等离子体烧结(SPS)技术进行致密化。详细研究了所得颗粒中杂质的形成。结果表明,杂质与SPS过程密切相关:LLZT的电解和石墨的电迁移。电解会在SPS工艺的阳极上产生La2Zr2O7,并伴随着L​​i2CO3在阴极上还原为无定形碳。使用不含Li2CO3的LLZT粉末可成功抑制SPS上的电解。除去这些杂质后,通过SPS获得的粒料的电化学性能与通过其他方法致密的粒料相当,在298 K时总离子电导率为6.9 x 10(-4)S cm(-1),并能防止高达100μA的短路直流极化时的cm(-2)。结果证实了SPS在制造致密的石榴石型固体电解质方面的巨大优势:低温(900-1100摄氏度)和短烧结时间(10分钟)。 (C)2016 Elsevier Ltd.保留所有权利。

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