EP0806397B1

Lithium-nickel composite oxide, process for preparing the same, and positive active material for secondary battery

Abstract

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EP0806397B1, drawing sheet 1
Sheet 1 of 35

Term

Term ended

Expired 22 November 2016, 9.8 years ago.

  1. Priority and filed
  2. Granted
  3. Expired
  4. Today

8 claims: 4 independent, 4 dependent

  1. 1
    A process for preparing a lithium nickel complex oxide represented by the general formula (I)         Li y-x1 Ni 1-x2 M x O 2      (I) wherein M represents a metal selected from the group consisting of Al, Fe, Co, Mn and Mg, x = x 1 + x 2 and (i) when M is Al or Fe, then x, x 1 and x 2 represent respectively 0 < x ≤ 0.2, x 1 = 0, and x 2 = x; (ii) when M is Co or Mn, then x, x 1 and x 2 represent respectively 0 < x ≤ 0.5, x 1 = 0, and x 2 = x; (iii) when M is Mg, then x, x 1 and x 2 represent respectively 0 < x < 0.2, 0 < x 1 ≤ 0.2 and 0 < x 2 ≤ 0.2; and y represents 0.9 ≤ y ≤ 1.3, said process comprising the steps of :(a) reacting a basic metal salt represented by the general formula (II)         Ni 1-x M p   x (OH) 2-nz (A n- ) [Z+(px-2x)/n] · mH 2 O     (II) wherein M represents a metal selected from the group consisting of Al, Fe, Co, Mn and Mg, p is a valence number of M with 2 ≤ p ≤ 3, A n- is an anion having a valence of n, and x, z and m are positive numbers respectively satisfying the ranges of 0 < x ≤ 0.2, 0.03 ≤ z ≤ 0.3, 0 ≤ m < 2;with a water soluble lithium compound in an aqueous medium in a molar ratio of Li/(Ni+M) of 0.9 ∼ 1.3 to obtain a slurry, (b) spray drying the obtained slurry;and (c) heating the resultant dry material at a temperature of about 600°C ∼ 900°C for about 4 hours or more in an oxidative atmosphere.
  2. 2
    A process for preparing a lithium nickel complex oxide represented by the general formula (I)         Li y-x1 Ni 1-x2 M x O 2      (I) wherein M represents a metal selected from the group consisting of Al, Fe, Co, Mn and Mg, x = x 1 + x 2 , and (i) when M is Al or Fe, then x, x 1 and x 2 -represent respectively 0 < x ≤ 0.2, x 1 = 0, and x 2 = x; (ii) when M is Co or Mn, then x, x 1 and x 2 represent respectively 0 < x ≤ 0.5, x 1 = 0, and x 2 = x; (iii) when M is Mg, then x, x 1 and x 2 represent respectively 0 < x ≤ 0.2, 0 < x 1 ≤ 0.2 and 0 < x 2 ≤ 0.2; and y represents 0.9 ≤ y ≤ 1.3, said process comprising the steps of:(a) reacting a basic metal salt represented by the general formula (II)         Ni 1-x M p   x (OH) 2-nz (A n- ) [Z+(px-2x)/n] · mH 2 O     (II) wherein M represents a metal selected from the group consisting of Al, Fe, Co, Mn and Mg, p is a valence number of M with 2 ≤ p ≤ 3, A n- is an anion having a valence of n, and x, z and m are positive numbers respectively satisfying the ranges of 0 < x ≤ 0.2, 0.03 ≤ z ≤ 0.3, 0 ≤ m < 2;with a water soluble lithium compound in an aqueous medium in a molar ratio of Li/(Ni+M) of 0.9 ∼ 1.3 to obtain a slurry, (b) spray drying the obtained slurry;(c) subjecting the spray dried product to press molding;and (d) heating the molded product at a temperature of about 600°C ∼ 900°C for about 4 hours or more in an oxidative atmosphere.
  3. 3
    A process for preparing a lithium nickel complex oxide represented by the general formula (I)         Li y-x1 Ni 1-x2 M x O 2      (I) wherein M represents a metal selected from the group consisting of Al, Fe, Co, Mn and Mg, x = x 1 + x 2 , and (i) when M is Al or Fe, then x, x 1 and x 2 represent respectively 0 < x ≤ 0.2, x 1 = 0, and x 2 = x; (ii) when M is Co or Mn, then x, x 1 and x 2 represent respectively 0 < x < 0.5, x 1 = 0, and x 2 = x; (iii) when M is Mg, then x, x 1 and x 2 represent respectively 0 < x ≤ 0.2, 0 < x 1 ≤ 0.2, and 0 < x 2 ≤ 0.2; and y represents 0.9 ≤ y ≤ 1.3, said process comprising the steps of:(a) reacting a basic metal salt represented by the general formula (II)         Ni 1-x M p   x (OH) 2-nz (A n- ) [Z+(px-2x)/n] · mH 2 O     (II) wherein M represents a metal selected from the group consisting of Al, Fe, Co, Mn and Mg, p is a valence number of M with 2 ≤ p ≤ 3, A n- is an anion having a valence of n, and x, z and m are positive numbers respectively satisfying the ranges of 0 < x ≤ 0.2, 0.03 ≤ z ≤ 0.3, 0 ≤ m < 2;with a water soluble lithium compound in an aqueous medium in a molar ratio of Li/(Ni+M) of 0.9 ∼ 1.3 to obtain a slurry, (b) spray drying the obtained slurry;(c) heating the spray dried product at a temperature of about 600°C ∼ 900°C for about 0.5 hour or more in an oxidative atmosphere;(d) pulverizing the resultant heat-treated product;(e) subjecting the pulverized heat-treated product to press molding;and (f) re-heating the molded product at a temperature of about 600°C ∼ 900°C for about 1 hour or more in an oxidative atmosphere.
  4. 7
    A positive electrode active material for a secondary battery which contains as an active ingredient the lithium nickel complex oxide prepared by the process as claimed in any one of claims 1 to 6.