Electrolyte Solutions for High Energy Cathode Materials and Methods for Use
Described herein are materials for use in electrolytes that provide a number of desirable characteristics when implemented within batteries, such as high stability during battery cycling up to high temperatures, high voltages, high discharge capacity, high coulombic efficiency, and excellent retention of discharge capacity and coulombic efficiency over several cycles of charging and discharging. In some embodiments, a high voltage electrolyte includes a base electrolyte and a set of additive compounds, which impart these desirable performance characteristics.
1 . A battery comprising:
an anode;
a cathode; and
an electrolyte comprising a lithium salt, a non-aqueous solvent, and an additive comprising poly(hexafluoropropylene oxide).
2 . The battery of claim 1 wherein the additive compound is present at a concentration of no greater than about 10% of the total weight of the electrolyte.
3 . The battery of claim 1 wherein the additive compound is present at a concentration of no greater than about 0.5% of the total weight of the electrolyte.
4 . The battery of claim 1 wherein the battery is characterized by a rated charge voltage greater than about 4.2 V.
5 . The battery of claim 1 wherein the battery is characterized by a rated charge voltage greater than about 4.4 V.
6 . The battery of claim 1 wherein the cathode comprises nickel, manganese, and cobalt.
7 . The battery of claim 1 wherein the anode comprises graphite.
8 . A method of making a high voltage battery, comprising:
providing an electrolyte solution comprising a lithium salt, a non-aqueous solvent, and an additive comprising poly(hexafluoropropylene oxide);
providing an anode;
providing a cathode;
assembling the anode and cathode and optionally a separator into an electrochemical cell;
adding the electrolyte solution to the cell; and
sealing the cell to form the high voltage.
9 . The method of claim 8 wherein the battery is characterized by a rated charge voltage greater than about 4.4 V.
10 . The method of claim 8 wherein the cathode comprises nickel, manganese, and cobalt.
11 . The method of claim 8 wherein the anode comprises graphite.
12 . An electrolyte, comprising:
a lithium salt,
a non-aqueous solvent, and
an additive comprising poly(hexafluoropropylene oxide).