Optimized Morphology and Tuning the Mn3+ Content of LiNi0.5Mn1.5O4 Cathode Material for Li-Ion Batteries

Author:

Lin Yan1ORCID,Välikangas Juho12ORCID,Sliz Rafal3ORCID,Molaiyan Palanivel1ORCID,Hu Tao1ORCID,Lassi Ulla12ORCID

Affiliation:

1. Research Unit of Sustainable Chemistry, Faculty of Technology, University of Oulu, 90570 Oulu, Finland

2. Kokkola University Consortium Chydenius, University of Jyvaskyla, 67100 Kokkola, Finland

3. Optoelectronics and Measurement Techniques Unit, University of Oulu, 90570 Oulu, Finland

Abstract

The advantages of cobalt-free, high specific capacity, high operating voltage, low cost, and environmental friendliness of spinel LiNi0.5Mn1.5O4 (LNMO) material make it one of the most promising cathode materials for next-generation lithium-ion batteries. The disproportionation reaction of Mn3+ leads to Jahn–Teller distortion, which is the key issue in reducing the crystal structure stability and limiting the electrochemical stability of the material. In this work, single-crystal LNMO was synthesized successfully by the sol-gel method. The morphology and the Mn3+ content of the as-prepared LNMO were tuned by altering the synthesis temperature. The results demonstrated that the LNMO_110 material exhibited the most uniform particle distribution as well as the presence of the lowest concentration of Mn3+, which was beneficial to ion diffusion and electronic conductivity. As a result, this LNMO cathode material had an optimized electrochemical rate performance of 105.6 mAh g−1 at 1 C and cycling stability of 116.8 mAh g−1 at 0.1 C after 100 cycles.

Funder

EU Regional Fund

Business Finland

Tauno Tönningin Säätiö

Fortum and Neste foundation

Publisher

MDPI AG

Subject

General Materials Science

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