首页> 外国专利> LITHIUM TITANATE PARTICULATE POWDER AND PRODUCTION METHOD FOR SAME, MG-CONTAINING LITHIUM TITANATE PARTICULATE POWDER AND PRODUCTION METHOD FOR SAME, NEGATIVE ELECTRODE ACTIVE MATERIAL PARTICULATE POWDER FOR NON-AQUEOUS ELECTROLYTE SECONDARY BATTERY, AND NON-AQUEOUS ELECTROLYTE SECONDARY BATTERY

LITHIUM TITANATE PARTICULATE POWDER AND PRODUCTION METHOD FOR SAME, MG-CONTAINING LITHIUM TITANATE PARTICULATE POWDER AND PRODUCTION METHOD FOR SAME, NEGATIVE ELECTRODE ACTIVE MATERIAL PARTICULATE POWDER FOR NON-AQUEOUS ELECTROLYTE SECONDARY BATTERY, AND NON-AQUEOUS ELECTROLYTE SECONDARY BATTERY

机译:用于非水电解质二次电池和非水电解质二次电池的含钛钛酸锂粉体及其生产方法,含MG的钛酸锂粉体及其生产方法,负极活性材料颗粒粉体

摘要

According to the present invention, there are provided lithium titanate particles which exhibit an excellent initial discharge capacity and an enhanced high-efficiency discharge capacity retention rate as an active substance for non-aqueous electrolyte secondary batteries and a process for producing the lithium titanate particles, and Mg-containing lithium titanate particles. The present invention relates to lithium titanate particles with a spinel structure comprising TiO 2 in an amount of not more than 1.5%, Li 2 TiO 3 in an amount of not less than 1% and not more than 6%, and Li 4 Ti 5 O 12 in an amount of not less than 94% and not more than 99% as determined according to Rietveld analysis when indexed with Fd-3m by XRD, and having a specific surface area of 7 to 15 m 2 /g as measured by BET method, a process for producing lithium titanate particles comprising the steps of adding and mixing a water-soluble lithium solution into a water suspension of an oxide of titanium having a BET specific surface area of 40 to 400 m 2 /g and a primary particle diameter of 5 to 50 nm and subjecting the resulting mixed suspension to aging reaction at a temperature of 50 to 100°C; subjecting the resulting reaction product to filtration, drying and pulverization; and subjecting the obtained dry particles to heat-calcination treatment at a temperature of 550 to 800°C, and Mg-containing lithium titanate particles having a composition represented by the formula: Li x Mg y Ti z O 4 wherein x, z 0; 0.01 ‰¤ y ‰¤ 0.20; 0.01 ‰¤ y/z ‰¤ 0.10; and 0.5 ‰¤ (x + y)/z ‰¤ 1.0, the Mg-containing lithium titanate particles having a BET specific surface area of 5 to 50 m 2 /g, a spinel single phase as a crystal structure, and a lattice constant (a) represented by a value of 0.050y + 8.3595 a ‰¤ 0.080y + 8.3595 (Å).
机译:根据本发明,提供了钛酸锂颗粒和其制备方法,所述钛酸锂颗粒作为非水电解质二次电池的活性物质具有优异的初始放电容量和提高的高效放电容量保持率。含镁的钛酸锂颗粒。本发明涉及具有尖晶石结构的钛酸锂颗粒,该尖晶石结构的TiO 2的含量为1.5%以下,Li 2 TiO 3的含量为1%以上且6%以下,且Li 4 Ti 5含量为1%以下。当通过XRD用Fd-3m分度时,根据Rietveld分析确定的O 12的含量不少于94%且不超过99%,并且具有由BET测量的比表面积为7至15m 2 / g的方法,一种生产钛酸锂颗粒的方法,包括将水溶性锂溶液加入并混合到BET比表面积为40至400 m 2 / g且一次粒径的钛氧化物的水悬浮液中的步骤。 5至50nm,并使所得的混合悬浮液在50至100℃的温度下进行老化反应;使所得反应产物过滤,干燥和粉碎;然后,将得到的干燥粒子在550〜800℃的温度下进行加热煅烧处理,从而得到组成为下述式的Li x Mg y Ti z O 4,其中x,z> 0的含镁的钛酸锂粒子。 ; 0.01‰y‰0.20; 0.01‰y / z‰0.10;和0.5‰(x + y)/ z‰1.0,具有BET比表面积为5至50 m 2 / g,尖晶石单相作为晶体结构和晶格常数的含Mg钛酸锂颗粒(a)表示为0.050y + 8.3595

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