Lithium secondary battery employing fluorine-substituted cyclohexylbenzene containing electrolytic solution
View Patent ↗A lithium secondary battery comprising a positive electrode, a negative electrode of artificial graphite or natural graphite and a nonaqueous electrolytic solution having an electrolyte dissolved in a nonaqueous solvent, wherein 0.1 to 20 wt. % of a cyclohexylbenzene having a halogen atom bonded to a benzene ring thereof is contained in the nonaqueous electrolytic solution exhibits large electric capacity and excellent cycle performance.
1. A lithium secondary battery comprising a positive electrode, a negative electrode of artificial graphite or natural graphite and a nonaqueous electrolytic solution having an electrolyte dissolved in a nonaqueous solvent, wherein 0.2 to 10 wt. % of a cyclohexylbenzene having a flourine atom bonded to a benzene ring thereof is contained in the nonaqueous electrolytic solution.
2. The lithium secondary battery of claim 1 , wherein the cyclohexylbenzene having a flourine atom bonded to a benzene ring thereof is a compound having the following formula (I):
wherein X is a flourine atom, and the flourine atom is attached to an optional position.
3. The lithium secondary battery of claim 2 , wherein the cyclohexylbenzene having a flourine atom bonded to a benzene ring thereof is 1-flourine-4-cyclohexylbenzene.
4. The lithium secondary battery of claim 1 , wherein the cyclohexylbenzene having a flourine atom bonded to a benzene ring thereof is contained in the nonaqueous electrolytic solution in an amount of 0.5 to 5 wt. %.
5. The lithium secondary battery of claim 1 , wherein the nonaqueous solvent of the nonaqueous electrolytic solution comprises a combination of a cyclic carbonate and a linear carbonate, a combination of a cyclic carbonate and lactone, or a combination of plural cyclic carbonates and linear carbonates.
6. The lithium secondary battery of claim 1 , which contains vinylene carbonate.
7. The lithium secondary battery of claim 1 , wherein the artificial graphite or natural graphite has a graphite crystal structure having a lattice distance in terms of d 002 of lattice surface (002) in the range of 0.335 to 0.340 nm.