Sulfide-based all-solid-state battery including positive electrode active material coated with lithium niobate precursor and method of manufacturing the same
Disclosed herein are a sulfide-based all-solid-state battery and a method of manufacturing the same, wherein the sulfide-based all-solid-state battery includes a positive electrode active material coated with a lithium niobate precursor, which is manufactured by a polyol process having low production cost, such that it improves safety and increases capacity of the sulfide-based all-solid-state battery.
1. A method of coating a positive electrode active material, comprising:
S 1 ) mixing a polyol and a chelating agent with each other to form a polyol precursor;
S 2 ) mixing the polyol precursor with lithium hydroxide and ammonium niobate oxalate hydrate to form a positive electrode active material coating material in a dry state;
S 3 ) mixing the positive electrode active material coating material and a positive electrode active material with each other at a temperature to form a mixture, increasing the temperature to a target temperature of 450° C. to 500° C., heat-treating the mixture at the target temperature for 2 to 3 hours to obtain a coated positive electrode active material, and
S 4 ) cooling the coated positive electrode active material to room temperature,
wherein the polyol is a polyether polyol or a polyester polyol, and the chelating agent is citric acid, polyvinylpyrrolidone (PVP), carboxylic acid, or a weak acid including a nitrogen element.
2. The method of coating a positive electrode active material according to claim 1 , wherein in step S 3 ), the temperature is increased at a rate of 5° C. per minute to the target temperature, and in step S 4 ), the cooling of the coated positive electrode active material to the room temperature is performed through natural cooling.