High-Performance High-Nickel Multi-Element Cathode Materials for Lithium-Ion Batteries

Author:

Tian Xinyong12,Guo Ruiqi13,Bai Ying1ORCID,Li Ning45,Wang Xinran13,Wang Jiantao45,Wu Chuan13ORCID

Affiliation:

1. Beijing Key Laboratory of Environmental Science and Engineering, School of Materials Science & Engineering, Beijing Institute of Technology, Beijing 100081, China

2. New Energy Materials Research Institute, Shaanxi Hongma Sci & Tech Co., Ltd., Hancheng 715400, China

3. Yangtze Delta Region Academy of Beijing Institute of Technology, Jiaxing 314019, China

4. China Automotive Battery Research Institute Co., Ltd., Beijing 100088, China

5. General Research Institute for Nonferrous Metals, Beijing 100088, China

Abstract

With the rapid increase in demand for high-energy-density lithium-ion batteries in electric vehicles, smart homes, electric-powered tools, intelligent transportation, and other markets, high-nickel multi-element materials are considered to be one of the most promising cathode candidates for large-scale industrial applications due to their advantages of high capacity, low cost, and good cycle performance. In response to the competitive pressure of the low-cost lithium iron phosphate battery, high-nickel multi-element cathode materials need to continuously increase their nickel content and reduce their cobalt content or even be cobalt-free and also need to solve a series of problems, such as crystal structure stability, particle microcracks and breakage, cycle life, thermal stability, and safety. In this regard, the research progress of high-nickel multi-element cathode materials in recent years is reviewed and analyzed, and the progress of performance optimization is summarized from the aspects of precursor orientational growth, bulk phase doping, surface coating, interface modification, crystal morphology optimization, composite structure design, etc. Finally, according to the industrialization demand of high-energy-density lithium-ion batteries and the challenges faced by high-nickel multi-element cathode materials, the performance optimization direction of high-nickel multi-element cathode materials in the future is proposed.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Chinese Academy of Engineering and Local Governments

General Research Institute for Nonferrous Metals

Science and Technology Program of Guangdong Province

Graduate Interdisciplinary Innovation Project of Yangtze Delta Region Academy of Beijing Institute of Technology

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Electrochemistry,Energy Engineering and Power Technology

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