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首页> 外文期刊>Journal of Applied Electrochemistry >A low external temperature method for synthesis of active electrode materials for Li batteries – Part A: Synthesis of pure manganese spinel
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A low external temperature method for synthesis of active electrode materials for Li batteries – Part A: Synthesis of pure manganese spinel

机译:一种用于锂电池活性电极材料的低温外部方法-第A部分:纯锰尖晶石的合成

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摘要

A low external temperature method (LETM) of active electrode material synthesis for lithium ion batteries has been proposed. The method consists of a two-step process, which is comprised of drying fine droplets of a solution of the starting compound in a liquid drying agent at 200 °C, followed by calcination of the obtained precursor in a fluidised bed at a furnace temperature of 300 °C. The method prevents uncontrolled growth of particles during the initial thermal pre-treatment and the final firing process. Lithium manganese spinel has been selected for describing the proposed LETM of synthesis. The properties of the spinel obtained by LETM are compared with those of a spinel obtained by the classical immobilised solid state synthesis at 750 °C. On electrochemical cycling, the capacity loss after 100 cycles of the LETM spinel at 11% is significantly lower than that for the spinel prepared by solid state methods (21.5%). However, only 3% difference is seen in the total integral capacity over the 100 cycles between spinels prepared by the different methods.
机译:已经提出了用于锂离子电池的活性电极材料合成的低外部温度方法(LETM)。该方法包括两个步骤的过程,该过程包括:将起始化合物在液体干燥剂中的溶液的细滴在200°C下干燥,然后在流化床中于炉温为200°C煅烧所得的前体。 300℃。该方法防止了在初始热预处理和最终烧制过程中颗粒的不受控制的生长。已选择锂锰尖晶石来描述拟议的合成LETM。将通过LETM获得的尖晶石的性能与通过在750°C下经典固定化固态合成获得的尖晶石的性能进行比较。在电化学循环中,LETM尖晶石在100次循环后的容量损失为11%,远低于固态方法制备的尖晶石的容量损失(21.5%)。但是,用不同方法制备的尖晶石在100个循环中的总积分容量只有3%的差异。

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