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Li-ion battery material under high pressure: amorphization and enhanced conductivity of Li4Ti5O12
Authors:Yanwei Huang  Yu He  Howard Sheng  Xia Lu  Haini Dong  Sudeshna Samanta  Hongliang Dong  Xifeng Li  Duck Young Kim  Ho-kwang Mao  Yuzi Liu  Heping Li  Hong Li  Lin Wang
Abstract:Lithium titanium oxide (Li4Ti5O12, LTO), a ‘zero-strain’ anode material for lithium-ion batteries, exhibits excellent cycling performance. However, its poor conductivity highly limits its applications. Here, the structural stability and conductivity of LTO were studied using in situ high-pressure measurements and first-principles calculations. LTO underwent a pressure-induced amorphization (PIA) at 26.9 GPa. The impedance spectroscopy revealed that the conductivity of LTO improved significantly after amorphization and that the conductivity of decompressed amorphous LTO increased by an order of magnitude compared with its starting phase. Furthermore, our calculations demonstrated that the different compressibility of the LiO6 and TiO6 octahedra in the structure was crucial for the PIA. The amorphous phase promotes Li+ diffusion and enhances its ionic conductivity by providing defects for ion migration. Our results not only provide an insight into the pressure depended structural properties of a spinel-like material, but also facilitate exploration of the interplay between PIA and conductivity.
Keywords:high pressure  pressure-induced amorphization  lithium-ion battery materials  ionic conductivity
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