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Solid-state Graft Copolymer Electrolytes for Lithium Battery Applications
Published on: August 12, 2013
Grain Welding Strategy Suppressing Chemomechanical Failure in Polycrystalline Cathode for High-Voltage Fast-Charging
Bo Peng1,2, Xing Huang1, Chengrong Xu2
1School of Materials Science and Engineering, Anhui University of Technology, Ma'anshan, 243002, China.
Abstract:
Chemomechanical failure is critical bottleneck for Na-based layered oxides (especially polycrystalline material) to achieve the stable operating at high-voltage with fast-charging ability. Although attempts like coating and doping are presented to alleviate this issue, the inherent intergranular crevices are inevitable during the synthetic process, which facilitates the chain reaction of chemomechanical failure. Herein, a concept of grain welding strategy is presented to achieve densification of powder particle by introducing liquid phase sintering process, strengthening intergranular adhesion force. The designed polycrystalline NaLi0.05[Ni1/3Fe1/3Mn1/3]0.95O2 shows dense structure attributed to the formation of eutectics which lowers the melting point with fast mass transfer. The Li doping also well manipulates the interlayer properties in unit cell, suppressing the high-voltage phase transition. Multiple characterizations like cross-sectional images and synchrotron-based full-field transmission X-ray microscopy confirm that the modified material suppresses the generation of microcracks during electrochemical cycles, impeding the chemomechanical breakdown. Consequently, it shows advanced capacity of 152.8 mAh g-1, excellent fast charging capability (121.6 mAh g-1 at 5 C, 12 min), as well as long-life of 1000 cycles.

