IP Library Patent Application 16331276
Patent Application
App. No. 16/331,276

A LITHIUM ION SECONDARY BATTERY AND A METHOD FOR PRODUCING THE SAME

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Patent No.
US None
App. No.
16/331,276
Abstract

The lithium ion secondary battery includes an electrode body and a nonaqueous electrolyte liquid. The negative electrode active material in the negative electrode includes a materials S including Si. Assuming that a total of all negative electrode active materials included in the negative electrode is 100 mass %, a content of the material S is higher than 5 mass %. The nonaqueous electrolyte liquid comprises propylene carbonate and a chain carbonate as a solvent. A volume content of the propylene carbonate in the solvent is 10 to 50 volume %. The positive electrode comprises a positive electrode composition layer comprising a metal oxide comprising Li and a metal M except for Li as a positive electrode active material provided on at least one surface of a positive electrode current collector. The lithium ion secondary battery has an upper limit voltage in charge is 4.35 V of more.

Claims (25)

1 . A lithium ion secondary battery, comprising: an electrode body comprising a positive electrode, a negative electrode and a separator therebetween which are stacked or wound; and a nonaqueous electrolyte liquid,

wherein the negative electrode has a negative electrode composition layer mainly composed of a negative electrode active material provided on at least one surface of a negative electrode current collector, the negative electrode active material including a materials S including Si,

wherein assuming that a total of all negative electrode active materials included in the negative electrode is 100 mass %, a content of the material S is 5 mass % or more,

wherein the nonaqueous electrolyte liquid comprises propylene carbonate and a chain carbonate as a solvent,

wherein a volume content of the propylene carbonate in the solvent is 10 to 50 volumes %,

wherein the positive electrode comprises a positive electrode composition layer comprising a metal oxide comprising Li and a metal M except for Li as a positive electrode active material provided on at least one surface of a positive electrode current collector, and

wherein the lithium ion secondary battery has an upper limit voltage in charge is 4.35 V of more.

2 . The lithium ion secondary battery according to claim 1 ,

wherein the positive electrode comprises a positive electrode material in which a surface of particles of the positive electrode active material is coated with an Al-containing oxide,

wherein the Al-containing oxide has an average coating thickness of 5 to 50 nm,

wherein the positive electrode active material contained in the positive electrode material comprises a lithium cobalt oxide comprising Co and at least one kind of an element M 1 selected from the group consisting of Mg, Zr, Ni, Mn, Ti and Al.

3 . The lithium ion secondary battery according to claim 1 , wherein the material S is a negative electrode material comprising SiOx including Si and O as constituent elements (wherein an atom ratio x of the O with respect to the Si is 0.5≤x≤1.5).

4 . The lithium ion secondary battery according to claim 1 , wherein at the time when the lithium ion secondary battery is discharged at an discharge current rate of 0.1 C to reach a voltage of 2.0 V, a molar ratio (Li/M) of the Li and the metal M except for the Li contained in the positive electrode active material is 0.8 to 1.05.

5 . The lithium ion secondary battery according to claim 1 , wherein the separator comprises a porous membrane (I) mainly composed of a thermoplastic resin, and a porous layer (II) mainly composed of fillers having a heat resistant temperature of 150° C. or more.

6 . The lithium ion secondary battery according to claim 1 , wherein the the lithium ion secondary battery further comprises a third electrode to insert Li ions into the negative electrode,

wherein the third electrode is disposed at least at an end face of the electrode body stacked such that the third electrode is electrically conductive with the negative electrode.

7 . The lithium ion secondary battery according to claim 1 , wherein the negative electrode has been made of the negative electrode composition layer including the negative electrode active material not including Li, the negative electrode composition layer being doped with Li ions.

8 . A method for producing the lithium ion secondary battery according to claim 6 , comprising:

using the third electrode having a Li supply source; and

electrically connecting the third electrode with the negative electrode to insert Li ions into the negative electrode.

9 . A method for producing the lithium ion secondary battery according to claim 7 , comprising:

providing the negative electrode having the negative electrode composition layer comprising a material not including Li and a binder;

doping the negative electrode composition layer with Li ions; and

then using the negative electrode to manufacture the lithium ion secondary battery.

10 . The lithium ion secondary battery according to claim 2 , wherein at the time when the lithium ion secondary battery is discharged at an discharge current rate of 0.1 C to reach a voltage of 2.0 V, a molar ratio (Li/M) of the Li and the metal M except for the Li contained in the positive electrode active material is 0.8 to 1.05.

Assignments (2)
CHANGE OF NAME Recorded Dec 3, 2021
From: MAXELL HOLDINGS, LTD.
To: MAXELL, LTD.
Reel/Frame 058301/0318 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 7, 2019
From: ABE, HIROSHI; YOSHIKAWA, SUSUMU; SEKIYA, TOMOHITO
To: MAXELL HOLDINGS, LTD.
Reel/Frame 048531/0569 →