首页> 外国专利> Nickel-manganese composite hydroxide particles and production method thereof, positive electrode active material for non-aqueous electrolyte secondary battery, production method thereof, and non-aqueous electrolyte secondary battery

Nickel-manganese composite hydroxide particles and production method thereof, positive electrode active material for non-aqueous electrolyte secondary battery, production method thereof, and non-aqueous electrolyte secondary battery

机译:镍锰复合氢氧化物粒子及其制造方法,非水电解质二次电池用正极活性物质,其制造方法以及非水电解质二次电池

摘要

The object of the present invention is to improve the roundness of nickel-manganese composite hydroxide particles obtained by a crystallization process, and to improve the filling characteristic of cathode active material produced using the nickel-manganese composite hydroxide particles as a precursor. A reaction aqueous solution is formed by supplying a raw material aqueous solution including at least Ni and Mn, an aqueous solution including an ammonium-ion donor, and an alkali solution into a reaction tank, and mixing, then nickel-manganese composite hydroxide particles are crystallized. When doing this, the oxygen concentration inside the reaction tank is controlled to be 3.0% by volume or greater, the temperature of the reaction aqueous solution is controlled to be 35° C. to 60° C., and the nickel-ion concentration is controlled to be 1,000 mg/L or greater. As a result, nickel-manganese composite hydroxide particles are obtained that include secondary particles formed by an aggregation of plural primary particles and expressed by the general formula: NixMnyMt(OH)2+α (where 0.05≤x≤0.95, 0.05≤y≤0.95, 0≤t≤0.20, x+y+t=1, 0≤α≤0.5, and M is one or more elements selected from among Co, Ti, V, Cr, Zr, Nb, Mo, Hf, Ta and W); and the average value of the roundness of cathode active material having a particle size that is 70% the average particle size or more is 0.82 or greater, and the tap density is 2.20 g/cm3 or greater.
机译:本发明的目的是改善通过结晶过程获得的镍-锰复合氢氧化物颗粒的圆度,并改善使用镍-锰复合氢氧化物颗粒作为前体制备的正极活性物质的填充特性。通过将至少包含Ni和Mn的原料水溶液,包含铵离子供体的水溶液和碱溶液供应到反应槽中并混合,然后形成镍-锰复合氢氧化物颗粒,从而形成反应水溶液。结晶。此时,将反应槽内的氧浓度控制为3.0体积%以上,将反应水溶液的温度控制为35℃〜60℃,将镍离子浓度控制为1.0%。控制为1,000 mg / L或更高。结果,获得镍-锰复合氢氧化物颗粒,其包括通过多个初级颗粒的聚集形成并由通式NixMnyMt(OH)2 +α(其中0.05≤x≤0.95,0.05≤y≤ 0.95、0≤t≤0.20,x + y + t = 1、0≤α≤0.5,并且M是选自Co,Ti,V,Cr,Zr,Nb,Mo,Hf,Ta和W);粒径为平均粒径的70%以上的正极活性物质的圆度的平均值为0.82以上,振实密度为2.20g / cm 3以上。

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