Carbon-coated lithium iron phosphate of olivine crystal structure and lithium secondary battery using the same
Disclosed is lithium iron phosphate having an olivine crystal structure, wherein the lithium iron phosphate has a composition represented by the following Formula 1 and carbon (C) is coated on the particle surface of the lithium iron phosphate containing a predetermined amount of sulfur (S). Li 1+a Fe 1−x M x (PO 4−b )X b (1) (wherein M, X, a, x, and b are the same as defined in the specification).
1. Lithium iron phosphate having an olivine crystal structure, wherein the lithium iron phosphate has a composition represented by the following Formula 1 and carbon (C) is coated on the particle surface of the lithium iron phosphate containing a predetermined amount of sulfur (S):
Li 1+a Fe 1−x M x (PO 4−b )X b (1)
wherein
M is at least one selected from Al, Mg, Ni, Co, Mn, Ti, Ga, Cu, V, Nb, Zr, Ce, In, Zn and Y,
X is at least one selected front F, S and N, and
0.5≦a≦+0.5, 0≦x≦0.5, 0≦b≦0.1
wherein the sulfur (S) is contained at an amount of 0.05 to 5% by weight, based on the total weight of the lithium iron phosphate wherein the sulfur and the carbon are present in the form of a structure selected from the group consisting of (i) a structure in which carbon is coated on the surface of lithium iron phosphate particles in a state in which a predetermined amount of sulfur is contained on the surface of lithium iron phosphate particles, (ii) a structure in which both sulfur and carbon are coated on the surface of lithium iron phosphate particles, (iii) a structure in which a composite of sulfur and carbon is coated on the surface of lithium iron phosphate particles, (iv) a structure in which carbon is bonded through sulfur to lithium iron phosphate particles, and combinations thereof.
2. The lithium iron phosphate according to claim 1 , wherein the lithium iron phosphate is LiFePO 4 .
3. The lithium iron phosphate according to claim 1 , wherein the carbon (C) is coated at an amount of 0.01 to 10% by weight, based on the total weight of the lithium iron phosphate.
4. The lithium iron phosphate according to claim 1 , wherein the carbon is coated on the particle surface of lithium iron phosphate to a thickness of 2 to 50 nm.
5. The lithium iron phosphate according to claim 1 , wherein the sulfur (S) is derived from a precursor for preparation of the lithium iron phosphate.
6. The lithium iron phosphate according to claim 1 , wherein the sulfur (S) is introduced by adding a sulfur-containing compound to the lithium iron phosphate.
7. The lithium iron phosphate according to claim 6 , wherein the sulfur-containing compound is at least one selected from sulfides, sulfites and sulfates.
8. The lithium iron phosphate according to claim 1 , wherein the lithium iron phosphate is prepared by a supercritical hydrothermal method.
9. Lithium iron phosphate having an olivine crystal structure wherein the lithium iron phosphate has a composition represented by the following Formula 2 and carbon (C) is coated on the particle surface of the lithium iron phosphate containing a predetermined amount of sulfur (S):
Li (1−a−b) Fe a/2 M′ b/2 Fe 1−c M″ c P 1−d X d O 4−e S e (2)
wherein M′ is at least one selected from the group consisting of Mg, Ni, Co, Mn, Ti, Cr, Cu, V, Ce, Sn, Ba, Ca, Sr and Zn;
M″ is at least one selected from the group consisting of Al, Mg, Ni, Co, Mn, Ti, Cr, Cu, V, Ce, Sn, Ba, Ca, Sr and Zn;
X is at least one selected from the group consisting of As, Sb, Bi, Mo, V, Nb and Te; and
0≦a≦0.6, 0≦b≦0.6, 0≦c≦1, 0≦d≦0.05, 0≦e≦3.5 wherein the sulfur and the carbon are present in the form of a structure selected from the group consisting of (i) a structure in which carbon is coated on the surface of lithium iron phosphate particles in a state in which a predetermined amount of sulfur is contained on the surface of lithium iron phosphate particles, (ii) a structure in which both sulfur and carbon are coated on the surface of lithium iron phosphate particles, (iii) a structure in which a composite of sulfur and carbon is coated on the surface of lithium iron phosphate particles, (iv) a structure in which carbon is bonded through sulfur to lithium iron phosphate particles, and combinations thereof.
10. A cathode mix comprising the lithium iron phosphate according to claim 9 as a cathode active material.