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Microwave-assisted optimization of the manganese redox states for enhanced capacity and capacity retention of LiAlxMn2-xO4 (x=0 and 0.3) spinel materials

机译:微波辅助优化氧化锰态以增强LiAlxMn2-xO4(x = 0和0.3)尖晶石材料的容量和容量保持率

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摘要

Microwave irradiation at the pre- and post-annealing steps of the synthesis of LiAlxMn2-xO4 (x = 0 and 0.3) spinel cathode materials for rechargeable lithium ion batteries is a useful strategy to optimize the average manganese valence number (n(Mn)) for enhanced capacity and capacity retention. The strategy impacts on the lattice parameter, average manganese valence, particle size and morphology, reversibility of the deintercalation/intercalation processes, and capacity retention upon continuous cycling. Microwave irradiation is able to shrink the particles for improved crystallinity. The XPS data clearly suggest that microwave irradiation can be used to tune the manganese valence (n(Mn)), and that the LiAlxMn2-xO4 with n(Mn) approximate to 3.5+ gives the best electrochemical performance. These new findings promise to revolutionize how we use microwave irradiation in the preparation of energy materials and various other materials for energy storage and conversion materials for enhanced performance.
机译:用于可再充电锂离子电池的LiAlxMn2-xO4(x = 0和0.3)尖晶石正极材料合成的退火前和退火后的微波辐照是优化平均锰价数(n(Mn))的有用策略用于增强容量和容量保留。该策略影响晶格参数,平均锰价,粒径和形态,脱嵌/嵌入过程的可逆性以及连续循环时的容量保持率。微波辐射能够使颗粒收缩以提高结晶度。 XPS数据清楚地表明,可以使用微波辐射来调节锰的化合价(n(Mn)),n(Mn)接近3.5+的LiAlxMn2-xO4提供最佳的电化学性能。这些新发现有望彻底改变我们在能量材料和各种其他能量存储材料以及转换材料的制备中使用微波辐射的方法,以提高性能。

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