COBALT-FREE HIGH-NICKEL POSITIVE ELECTRODE MATERIAL, PREPARATION METHOD THEREFOR AND USE THEREOF
Provided in the present disclosure are a cobalt-free high-nickel positive electrode material, a preparation method therefor and use thereof. The cobalt-free high-nickel positive electrode material comprises a cobalt-free high-nickel matrix material and a coating layer coated on the cobalt-free high-...
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Format | Patent |
Language | English French German |
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28.08.2024
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Abstract | Provided in the present disclosure are a cobalt-free high-nickel positive electrode material, a preparation method therefor and use thereof. The cobalt-free high-nickel positive electrode material comprises a cobalt-free high-nickel matrix material and a coating layer coated on the cobalt-free high-nickel matrix material, wherein a chemical formula of the cobalt-free high-nickel matrix material is LimNixMnyO2, where 0.2≤m≤ 0.8, 0.4≤x≤0.95, and 0.05≤y≤0.6; and the coating layer is TiBzO1-z, where 0.2≤z≤0.8. The cobalt-free high-nickel positive electrode material obtained by means of modification using the coating layer TiBzO1-z has good acid resistance and wear resistance, high mechanical strength and excellent conductivity; and when the cobalt-free high-nickel positive electrode material is used for a lithium ion battery, the high-temperature cycling performance, capacity and initial efficiency of the lithium ion battery are greatly improved. |
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AbstractList | Provided in the present disclosure are a cobalt-free high-nickel positive electrode material, a preparation method therefor and use thereof. The cobalt-free high-nickel positive electrode material comprises a cobalt-free high-nickel matrix material and a coating layer coated on the cobalt-free high-nickel matrix material, wherein a chemical formula of the cobalt-free high-nickel matrix material is LimNixMnyO2, where 0.2≤m≤ 0.8, 0.4≤x≤0.95, and 0.05≤y≤0.6; and the coating layer is TiBzO1-z, where 0.2≤z≤0.8. The cobalt-free high-nickel positive electrode material obtained by means of modification using the coating layer TiBzO1-z has good acid resistance and wear resistance, high mechanical strength and excellent conductivity; and when the cobalt-free high-nickel positive electrode material is used for a lithium ion battery, the high-temperature cycling performance, capacity and initial efficiency of the lithium ion battery are greatly improved. |
Author | WANG, Pengfei GUO, Feng SHI, Zetao QIAO, Qiqi |
Author_xml | – fullname: WANG, Pengfei – fullname: QIAO, Qiqi – fullname: SHI, Zetao – fullname: GUO, Feng |
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DocumentTitleAlternate | KOBALTFREIES POSITIVELEKTRODENMATERIAL MIT HOHEM NICKELGEHALT, HERSTELLUNGSVERFAHREN DAFÜR UND VERWENDUNG DAVON MATÉRIAU D'ÉLECTRODE POSITIVE À HAUTE TENEUR EN NICKEL EXEMPT DE COBALT, SON PROCÉDÉ DE PRÉPARATION ET SON UTILISATION |
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Snippet | Provided in the present disclosure are a cobalt-free high-nickel positive electrode material, a preparation method therefor and use thereof. The cobalt-free... |
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SubjectTerms | BASIC ELECTRIC ELEMENTS CHEMISTRY COMPOUNDS CONTAINING METALS NOT COVERED BY SUBCLASSESC01D OR C01F COMPOUNDS THEREOF ELECTRICITY INORGANIC CHEMISTRY METALLURGY NON-METALLIC ELEMENTS PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSIONOF CHEMICAL INTO ELECTRICAL ENERGY |
Title | COBALT-FREE HIGH-NICKEL POSITIVE ELECTRODE MATERIAL, PREPARATION METHOD THEREFOR AND USE THEREOF |
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