POSITIVE ELECTRODE ACTIVE MATERIAL, POSITIVE ELECTRODE, BATTERY, AND METHOD FOR PRODUCING LITHIUM-CONTAINING COMPOUND
Provided is a positive electrode active material containing a compound containing an alkaline metal that is represented by the following Compositional Formula (1), and has a chain structure in which MX 4 tetrahedrons are connected to each other by edge-sharing in a crystal structure. A a M b X 4 (1) (In Formula (1), A is an alkaline metal element, M is a transition metal element, X is at least one of S and Se, and relationships of 0<a<5 and 1<b≤2.5 are satisfied.)
1 . A positive electrode active material comprising:
a compound containing an alkaline metal represented by the following Compositional Formula (1), and having a chain structure in which MX 4 tetrahedrons are connected to each other by edge-sharing in a crystal structure.
A a M b X 4 (1)
(In Formula (1), A is an alkaline metal element, M is a transition metal element, X is at least one of S and Se, and relationships of 0<a<5 and 1<b≤2.5 are satisfied).
2 . The positive electrode active material according to claim 1 ,
wherein X includes S.
3 . The positive electrode active material according to claim 1 ,
wherein A is Na.
4 . The positive electrode active material according to claim 1 , wherein the compound containing an alkaline metal is represented by the following Compositional Formula (2).
Li a1 Na a2 M b1 X 4 (2)
(In Formula (2), relationship of 0≤a1≤4, 0≤a2≤4, 1.35≤b1≤2.5, 0<a1+a2<5 are satisfied, M is a transition metal element, and X is at least one of S and Se).
5 . The positive electrode active material according to claim 1 ,
wherein M includes at least one kind of metal element selected from the group consisting of Fe, Ni, Mn, and Co.
6 . A positive electrode comprising:
the positive electrode active material according to claim 1 .
7 . A battery comprising:
the positive electrode according to claim 6 .
8 . A method for producing a compound containing a lithium, comprising:
a step of substituting at least a part of sodium contained in a sodium-containing compound with lithium by performing charging and discharging on an electrochemical cell including,
a positive electrode containing the sodium-containing compound represented by the following Compositional Formula (4), and having a chain structure in which MX 4 tetrahedrons are connected to each other by edge-sharing in a crystal structure,
A a3 M b2 X 4 (4)
(In Formula 4, A is an alkaline metal element including sodium, M is a transition metal element, X is at least one of S and Se, and relationships of 0<a3<5 and 1<b2≤2.5 are satisfied),
a negative electrode that contains lithium, and
an electrolyte that is disposed between the positive electrode and the negative electrode, and contains lithium ions.