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A series of heterogeneous Se-doped cobalt-free high nickel layered cathodes LiNi0.847Mn0.092Al0.061O2 are synthesized using the high-temperature solid-phase method to address the issues of rapid capacity decay, poor stability, and structural phase transition in cobalt-free high nickel materials. The results show that Se doping can effectively inhibit the formation and diffusion of structural phase transition and micro-cracks. Among them, the doping amount of 1% LiNi0.837Mn0.092Al0.061Se0.01O2 low degree of positive electrode material of lithium nickel are mixed, with better crystallinity and lamellar structure. At a high-voltage of 4.5 V, the specific discharge capacity of LiNi0.837Mn0.092Al0.061Se0.01O2 is as high as 207.61 mAh·g−1, and the capacity retention rate increased from 69.37% without doping to 85.45% after 100 cycles at 1C.
This is an open access article under the CC BY-NC license (http://creativecommons.org/licenses/by-nc/4.0/).
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