POSITIVE ELECTRODE ACTIVE MATERIAL FOR LITHIUM ION SECONDARY BATTERY, POSITIVE ELECTRODE AND LITHIUM ION SECONDARY BATTERY

To provide a positive electrode active material for lithium ion secondary batteries, which is high in capacity and exhibits a high output.SOLUTION: A positive electrode active material includes first positive electrode active material particles A and second positive electrode active material particl...

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Bibliographic Details
Main Author NAGATA HIROAKI
Format Patent
LanguageEnglish
Japanese
Published 19.08.2021
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Summary:To provide a positive electrode active material for lithium ion secondary batteries, which is high in capacity and exhibits a high output.SOLUTION: A positive electrode active material includes first positive electrode active material particles A and second positive electrode active material particles B. The first positive electrode active material particles A have a solid structure, and have a tap density of 2.1 g/cm3 or more and an average particle size (D50) of 8 μm or more and 30 μm or less. The second positive electrode active material particles B have a hollow structure, and have a tap density of 1.8 g/cm3 or less and an average particle size (D50) of 1 μm or more and 8 μm or less, the average particle size (D50) of the second positive electrode active material particles B being smaller than the average particle size (D50) of the first positive electrode active material particles A. When a positive electrode material including the positive electrode active material is pressed down with a linear pressure of 200 N/mm, the average aspect ratio (W/L) of gaps of the second positive electrode active material particles B is 0.5 or less, and the mass (WA)of each first positive electrode active material particle A and the mass (WB)of each second positive electrode active material particle B satisfy an expression (1). 0.001≤WB/(WA+WB)≤0.5...(1)SELECTED DRAWING: Figure 1 【課題】高容量であるとともに、高出力を示す、リチウムイオン二次電池用正極活物質の提供。【解決手段】第1の正極活物質粒子Aと、第2の正極活物質粒子Bとを含み、第1の正極活物質粒子Aは、中実構造を有し、タップ密度が2.1g/cm3以上であり、かつ、平均粒径(D50)が8μm以上30μm以下であり、第2の正極活物質粒子Bは、中空構造を有し、タップ密度が1.8g/cm3以下であり、平均粒径(D50)が1μm以上8μm以下、かつ、第1の正極活物質粒子Aの平均粒径(D50)より小さく、正極活物質を含む正極材料を線圧200N/mmで圧下したとき、第2の正極活物質粒子Bの空隙の平均アスペクト比(W/L)が0.5以下であり、第1の正極活物質粒子Aの質量(WA)と第2の正極活物質粒子Bの質量(WB)との比率が式(1)を満たす、正極活物質。0.001≦WB/(WA+WB)≦0.5・・・(1)【選択図】図1
Bibliography:Application Number: JP20200014122