Anode active material and all solid secondary battery
A main object of the present invention is to provide an anode active material capable of enhancing improvement of heat resistance in an all solid secondary battery. The present invention solves the problem by providing an anode active material comprising an active material particle having carbon as a main component, and a coating layer containing Li x PO y (2≤x≤4, 3≤y≤5) and formed on a surface of the active material particle.
1. An anode active material comprising:
an active material particle having carbon as a main component; and
a coating layer containing Li x PO y (2≤x≤4, 3≤y≤y≤5) and formed on a surface of the active material particle,
wherein a ratio of the Li x PO y contained in the coating layer is 50 mol % or more.
2. An all solid secondary battery comprising a cathode active material layer containing a cathode active material, an anode active material layer containing an anode active material, and a solid electrolyte layer containing a sulfide solid electrolyte material and formed between the cathode active material layer and the anode active material layer;
wherein the anode active material is the anode active material according to claim 1 .
3. An anode active material comprising:
an active material particle having carbon as a main component; and
a coating layer containing Li x PO y (2≤x≤4, 3 ≤y≤5) and formed on a surface of the active material particle,
wherein a thickness of the coating layer is in a range of 1 nm to 20 nm.
4. An all solid secondary battery comprising a cathode active material layer containing a cathode active material, an anode active material layer containing an anode active material, and a solid electrolyte layer containing a sulfide solid electrolyte material and formed between the cathode active material layer and the anode active material layer;
wherein the anode active material is the anode active material according to claim 3 .