Achieving Thermodynamic Stability of Single‐Crystal Co‐Free Ni‐Rich Cathode Material for High Voltage Lithium‐Ion Batteries

Author:

Shen Jixue1,Zhang Bao12,Huang Weiyuan3,Li Xiao1,Xiao Zhiming1,Wang Jing3,Zhou Tao4,Wen Jianguo4,Liu Tongchao3,Amine Khalil356ORCID,Ou Xing1

Affiliation:

1. Engineering Research Center of the Ministry of Education for Advanced Battery Materials School of Metallurgy and Environment Central South University Changsha 410083 P. R. China

2. Zhejiang Power New Energy Co. Ltd. Zhuji 311899 P. R. China

3. Chemical Sciences and Engineering Division Argonne National Laboratory Lemont IL 60439 USA

4. Center for Nanoscale Materials Argonne National Laboratory Lemont IL 60439 USA

5. Institute for Research & Medical Consultations (IRMC) Imam Abdulrahman Bin Faisal University (IAU) Dammam 34221 Saudi Arabia

6. Material Science and Engineering Stanford University Stanford CA 94305 USA

Abstract

AbstractNi‐rich layered cathode materials are progressively considered as the standard configuration of high‐energy electric vehicles by virtues of their high capacity and eliminated “range anxiety.” However, the poor cyclic stability and severe cobalt supply crisis would restrain their wide commercial applicability. Here, a cost‐effective single‐crystal Co‐free Ni‐rich cathode material LiNi0.8Mn0.18Fe0.02O2 (NMF), which outperforms widely commercial polycrystalline LiNi0.83Co0.11Mn0.06O2 (MNCM) and single‐crystal LiNi0.83Co0.11Mn0.06O2 (SNCM) is reported. Surprisingly, NMF can compensate for the reversible capacity loss under the designed conditions of high‐temperature and elevated‐voltage, achieving a competitive energy density compared with conventional MNCM or SNCM. Combining operando characterizations and density functional theory calculation, it is revealed that NMF cathode with improved dynamic structure evolution largely alleviates the mechanical strain issue commonly found in Ni‐rich cathode, which can reduce the formation of intragranular cracks and improve the safety performance. Consequently, this new Co‐free NMF cathode can achieve a perfect equilibrium between material cost and electrochemical performance, which not only reduces the production cost by >15%, but also demonstrates excellent thermal stability and cycling performance..

Funder

National Natural Science Foundation of China

U.S. Department of Energy

Office of Science

Army Research Laboratory

Vehicle Technologies Office

Office of Energy Efficiency and Renewable Energy

Publisher

Wiley

Subject

Electrochemistry,Condensed Matter Physics,Biomaterials,Electronic, Optical and Magnetic Materials

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