Cathode material made of cobalt-free layered oxide
A cathode material made of cobalt-free layered oxide. A primary particle of the cathode material includes a lithium-poor phase Li a M 2-a O 2 and a lithium-rich phase Li 2 M′O 3 which are of a layered-like structure. Coordination between these two phases is capable to address an issue of low energy density, low initial coulombic efficiency, and low lithium utilization of conventional cobalt-free layered cathode materials. The novel cobalt-free layered cathode material can be applied to lithium-ion batteries to achieve a low cost and high energy density.
1 . A cathode material made of cobalt-free layered oxide, wherein:
a chemical formula of the cathode material is xLi a M 2-a O 2 ·2(1-x)/3Li 2 M′O 3 ;
a primary particle of the cathode material comprises Li a M 2-a O 2 of a lithium-poor phase and Li 2 M′O 3 of a lithium-rich phase which have a layered like structure;
the lithium-poor phase comprises first atomic layers and second atomic layers that are interleaved, the first atomic layers comprise a first part of lithium ions and a part of M ions, and the second atomic layers comprise another part of the M ions;
the lithium-rich phase comprises third atomic layers and fourth atomic layers that are interleaved, the third atomic layers comprise a second part of the lithium ions, and the fourth atomic layers comprise a third part of the lithium ions and M′ ions;
x is a proportion of the lithium-poor phase in the cathode material, a is an occupancy of Li in a lithium atomic layer in the lithium-poor phase, 0<x<1, and 0.5<a<1; and
the M ions comprises a first ion and a second ion, a ratio of an ionic radius of the first ion to an ion radius of an lithium ion is greater than 0.9 and smaller than 1.1, and an element of the second ion is identical to an element of the M′ ions.
2 . The cathode material according to claim 1 , wherein the A ion the first ion comprises one or more of: Ni 2+ , Cu + , Zn 2+ , or Fe 2+ .
3 . The cathode material according to claim 1 , wherein the M ions further comprise one or both of Al 3+ and Cr 3+ .
4 . The cathode material according to claim 1 , wherein a weighted average valence between the M ions and the M′ ions is greater than 2.9 and smaller than 3.25.
5 . The cathode material according to claim 1 , wherein 0.3<x<0.8.
6 . The cathode material according to claim 1 , wherein 0.75<a<0.95.
7 . The cathode material according to claim 1 , wherein a proportion of the first ion among the M ions is not less than 5%.
8 . The cathode material made of cobalt-free layered oxide according to claim 1 , wherein in an X-ray diffraction pattern of the cathode material:
a super-lattice peak is located at right of an (003) peak;
a ratio of an integral area of the (003) peak to an integral area of a (104) peak is smaller than 1.1; and
a (018) peak and a (110) peak overlap with each other.
9 . An electrode, comprising the cathode material according to claim 1 .
10 . A lithium-ion battery or a lithium metal battery, comprising a cathode and an anode, wherein the cathode is the electrode according to claim 9 .
11 . The cathode material according to claim 1 , wherein a valence of the M′ ions is +4.
12 . The cathode material according to claim 1 , wherein the M′ ions comprise one or more of: Mn 4+ , Zr 4+ , Ti 4+ , V 4+ , Sn 4+ , or Ru 4+ .