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MIL-53(Fe) anode for lithium-ion batteries with the capacity self-activation effect based on electrochemically induced crystalline-to-amorphization transformation

Xiaoqing Zhou,Junfeng Li,Haonan Dong, Yanxi Luo, Chenyu Liu,Yi Huang,Xuefei Lai, Xiaoli Huang,Bo Yue

MATERIALS TODAY COMMUNICATIONS(2024)

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摘要
The relationship between structural changes and electrochemical properties of flexible metal-organic framework materials is a striking phenomenon. We synthesized a highly ordered flexible metal-organic framework called MIL-53(Fe) as an anode for lithium-ion batteries. MIL-53(Fe) 's cyclic performance exhibits capacity selfactivation traits. At 100 mA g-1 current density, the specific discharge capacity of 100 cycles is 931.23 mAh g- 1 throughout the cycle was observed using X-ray diffraction, Raman spectroscopy, and high-resolution transmission electron microscopy. It was discovered that the structure of MIL-53(Fe) experienced an electrochemically induced transition from a crystalline state to an amorphous state. After amorphous conversion, the electrochemical transfer impedance of the material is reduced from 177.2 d2 to 40.6 d2, the diffusion coefficient of lithium-ion is increased from 3.32 x 10-14 cm2/s to 1.10 x 10-13 cm2/s, and the mass transfer capacity is improved. The results show that MIL-53(Fe) has unique electrochemical properties, and the feasibility of amorphous transition as a mechanism to enhance the electrochemical properties is found.
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关键词
Metal-organic frameworks(MOFs),MIL-53(Fe),Lithium-ion battery,Capacity self-activation,Amorphous transformation
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