NOVEL BATTERY SYSTEMS BASED ON TWO-ADDITIVE ELECTROLYTE SYSTEMS INCLUDING 1,2,6-OXODITHIANE-2,2,6,6-TETRAOXIDE
Improved battery systems with two-additive mixtures including in an electrolyte solvent that is a carbonate solvent, an organic solvent, a non-aqueous solvent, methyl acetate, or a combination of them. The positive electrode of the improved battery systems may be formed from lithium nickel manganese cobalt compounds, and the negative electrode of the improved battery system may be formed from natural or artificial graphite.
1 . An energy storage device, comprising:
a negative electrode;
a positive electrode; and
a nonaqueous electrolyte consisting essentially of a lithium salt, a nonaqueous solvent, and an additive mixture comprising:
a first operative additive selected from the group consisting of fluoroethylene carbonate, LiPO 2 F 2 , vinylene carbonate, and combinations thereof, and
a second operative additive that is 1,2,6-oxodithiane-2,2,6,6-tetraoxide having the following formula (I):
wherein a concentration of the first operative additive is in a range from 0.25 to 6% by weight, and a concentration of the second operative additive is in a range from 0.25 to 5% by weight;
wherein a concentration of the nonaqueous solvent is greater than 6% by weight; and
wherein the nonaqueous solvent is selected from the group consisting of: ethylene carbonate (EC), ethyl methyl carbonate (EMC), dimethyl carbonate (DMC), and combinations thereof.
2 . The energy storage device of claim 1 , wherein the nonaqueous solvent is selected from the group consisting of: EC/EMC, wherein the ratio of EC to EMC is 30:70; and EC/EMC/DMC, wherein the ratio of EC to EMC to DMC is 25:5:70.
3 . The energy storage device of claim 1 , wherein the nonaqueous solvent is EC/EMC/DMC, wherein the ratio of EC to EMC to DMC is 25:5:70.
4 . The energy storage device of claim 1 , wherein the lithium salt comprises LiPF 6 .
5 . The energy storage device of claim 4 , wherein the LiPF 6 has a concentration of at most about 1.2M.
6 . The energy storage device of claim 1 , wherein the first operative additive is fluoroethylene carbonate.
7 . The energy storage device of claim 1 , wherein the first operative additive is vinylene carbonate.
8 . The energy storage device of claim 1 , wherein the first operative additive is LiPO 2 F 2 .
9 . The energy storage device of claim 1 , wherein a volume of gas produced in the lithium-ion battery is comparable with a volume of gas produced in a lithium-ion battery comprising only the first operative additive.
10 . The energy storage device of claim 9 , wherein the lithium-ion battery has at least 95% retention of initial capacity after 200 cycles between 3.0 V and 4.3 V at a charging rate of C/3 CCCV at 40° C.
11 . The energy storage device of claim 9 , wherein the lithium-ion battery has at least 95% retention of initial capacity after 800 cycles between 3.0 V and 4.3 V at a charging rate of C/3 CCCV at 40° C.
12 . The energy storage device of claim 1 , wherein the positive electrode comprises a lithium nickel manganese cobalt oxide (NMC) active material.
13 . The energy storage device of claim 12 , wherein the positive electrode comprises at least one NMC selected from the group consisting of: NMC111, NMC532, NMC811, and NMC622.
14 . The energy storage device of claim 1 , wherein the negative electrode comprises a graphite active material.
15 . An electric vehicle with a rechargeable battery comprising:
a drive motor;
gear box;
electronics; and
the energy storage device of claim 1 .
16 . The electric vehicle of claim 15 , wherein the nonaqueous solvent is selected from the group consisting of: EC/EMC, wherein the ratio of EC to EMC is 30:70; and EC/EMC/DMC, wherein the ratio of EC to EMC to DMC is 25:5:70.
17 . The electric vehicle of claim 15 , wherein the nonaqueous solvent is EC/EMC/DMC, wherein the ratio of EC to EMC to DMC is 25:5:70.
18 . The electric vehicle of claim 15 , wherein the lithium salt comprises LiPF 6 .
19 . The electric vehicle of claim 15 , wherein the LiPF 6 has a concentration of at most about 1.2M.
20 . The electric vehicle of claim 15 , wherein the first operative additive fluoroethylene carbonate.
21 . The electric vehicle of claim 15 , wherein the first operative additive is vinylene carbonate.
22 . The electric vehicle of claim 15 , wherein the first operative additive is LiPO 2 F 2 .
23 . The electric vehicle of claim 15 , wherein a volume of gas produced in the battery system is comparable with a volume of gas produced in a battery system comprising only the first operative additive.
24 . The electric vehicle of claim 15 , wherein the battery system has at least 95% retention of initial capacity after 200 cycles between 3.0 V and 4.3 V at a charging rate of C/3 CCCV at 40° C.
25 . The electric vehicle of claim 12 , wherein the battery system has at least 95% retention of initial capacity after 800 cycles between 3.0 V and 4.3 V at a charging rate of C/3 CCCV at 40° C.
26 . The electric vehicle of claim 15 , wherein the positive electrode comprises an NMC active material.
27 . The electric vehicle of claim 26 , wherein the positive electrode comprises at least one NMC selected from the group consisting of: NMC111, NMC532, NMC811, and NMC622.
28 . The electric vehicle of claim 15 , wherein the negative electrode comprises a graphite active material.