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Low-Temperature Carbon Coating of Nanosized LiAlMnO and High-Density Electrode for High-Power Li-Ion Batteries. | LitMetric

Low-Temperature Carbon Coating of Nanosized LiAlMnO and High-Density Electrode for High-Power Li-Ion Batteries.

Nano Lett

Department of Energy Engineering, School of Energy and Chemical Engineering, Ulsan National Institute of Science and Technology, Ulsan, 44919, Republic of Korea.

Published: June 2017

Despite their good intrinsic rate capability, nanosized spinel cathode materials cannot fulfill the requirement of high electrode density and volumetric energy density. Standard carbon coating cannot be applied on spinel materials due to the formation of oxygen defects during the high-temperature annealing process. To overcome these problems, here we present a composite material consisting of agglomerated nanosized primary particles and well-dispersed acid-treated Super P carbon black powders, processed below 300 °C. In this structure, primary particles provide fast lithium ion diffusion in solid state due to nanosized diffusion distance. Furthermore, uniformly dispersed acid-treated Super P (ASP) in secondary particle facilitates lower charge transfer resistance and better percolation of electron. The ASPLMO material shows superior rate capability, delivering 101 mAh g at 300 C-rate at 24 °C, and 75 mAh g at 100 C-rate at -10 °C. Even after 5000 cycles, 86 mAh g can be achieved at 30 C-rate at 24 °C, demonstrating very competitive full-cell performance.

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Source
http://dx.doi.org/10.1021/acs.nanolett.7b01076DOI Listing

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