LITHIUM ION SECONDARY BATTERY AND METHOD FOR PREPARING THE SAME
A lithium ion secondary battery and a method for preparing the same are provided. The lithium ion secondary battery includes a positive electrode having a positive active material represented by Formula (1), a negative electrode and an electrolyte, wherein the positive active material is activated by performing a first charge operation with a voltage ranging from 4.5 V to 4.7 V and the voltage is then reduced to less than 4.5 V: a Li 2 MnO 3 -(1- a )LiMO 2 (1) where M is at least one selected from the group consisting of Ni, Co and Mn, and 0<a<1.
1 . A lithium ion secondary battery comprising a positive electrode having a positive active material represented by Formula (1), a negative electrode and an electrolyte, wherein the positive active material is activated by performing a first charge operation with a voltage ranging from 4.5 V to 4.7 V and the voltage is then reduced to less than 4.5 V:
a Li 2 MnO 3 -(1- a )LiMO 2 (1)
where M is at least one selected from the group consisting of Ni, Co and Mn, and 0<a<1.
2 . The lithium ion secondary battery of claim 1 , wherein the positive active material represented by Formula (1) includes a positive active material represented by Formula (2):
Li x Ni y Co z Mn 1-y-z O 2+w (2)
wherein x≧1.05, 0≦y≦0.35, and 0≦z≦0.35, w≧0.
3 . The lithium ion secondary battery of claim 2 , wherein the positive active material represented by Formula (2) is a compound having a molar ratio of Li to a mixture of transition metal elements Ni, Co, and Mn, Li:(Ni+Co+Mn), is in a range of 1.05 to 1.5 based on 1 mole of the mixture (Ni+Co+Mn).
4 . A method for preparing a lithium ion secondary battery comprising:
preparing a slurry by mixing a positive active material represented by Formula (1), a conductive agent and a binder;
preparing a positive electrode by coating the slurry on a positive current collector;
preparing a battery using the positive electrode by injecting an electrolyte; and
performing initial activation on the prepared battery by performing a first charge operation with a voltage ranging from 4.5 V to 4.7 V:
a Li 2 MnO 3 -(1- a )LiMO 2 (1)
where M is at least one selected from the group consisting of Ni, Co and Mn, and 0<a<1.
5 . The method of claim 4 , wherein the positive active material represented by Formula (1) includes a positive active material represented by Formula (2):
Li x Ni y Co z Mn 1-y-z O 2+w (2)
wherein x≧1.05, 0<y<0.35, and 0<z<0.35, w>0.
6 . The method of claim 5 , wherein the positive active material represented by Formula (2) is a compound having a molar ratio of Li to a mixture of transition metal elements Ni, Co, and Mn, Li:(Ni+Co+Mn), is in a range of 1.05 to 1.5 based on 1 mole of the mixture (Ni+Co+Mn).