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通过甘油介导的颗粒重构策略实现工业磷酸铁锂黑粉的直接再生

Direct Regeneration of Industrial LiFePO Black Mass Through A Glycerol-Enabled Granule Reconstruction Strategy.

作者信息

Feng Chengzhi, Cao Yang, Song Lixian, Zhao Bo, Yang Qin, Zhang Yaping, Wei Xijun, Zhou Guangmin, Song Yingze

机构信息

State Key Laboratory of Environment-Friendly Energy Materials, Engineering Research Center of Biomass Materials, Ministry of Education, School of Materials and Chemistry, Southwest University of Science and Technology, Mianyang, Sichuan, 621010, China.

Shenzhen Geim Graphene Center, Tsinghua-Berkeley Shenzhen Institute & Tsinghua Shenzhen International Graduate School, Tsinghua University, Shenzhen, 518055, China.

出版信息

Angew Chem Int Ed Engl. 2025 Feb 3;64(6):e202418198. doi: 10.1002/anie.202418198. Epub 2024 Nov 25.

Abstract

With the increasing sales of electric vehicles, lots of spent lithium-ion batteries (LIBs) assembled with LiFePO (LFP) cathodes will retire in the next few years, posing a significant challenge for their effective and environmentally-friendly recycling. The main reason why spent LFP cathodes fail to re-utilize lies in the lattice defects caused by lithium loss and structural defects resulting from stress accumulation. In this work, we propose an in situ granule reconstruction strategy to directly regenerate spent LFP black mass (S-BM) using glycerol in industry settings. The hydroxyl groups abundant in glycerol serves as electron donor that help reduce Fe (III) and repair Fe-Li antisite defects (Fe). Additionally, the chelating properties of glycerol intervene with structurally disintegrated particles, inhibiting Oswald ripening effect and promoting bonding of grain boundaries to generate lamellar microcrystals with homogeneous grain size, recover their morphology and crystal structure after a facile annealing procedure. Furthermore, the regenerated LFP restores Fe-O bonds which further inhibits structural distortion and improve Li migration kinetics. As a result, the regenerated industrial LFP black mass (R-BM) exhibits superior lithium storage performance with a discharge capacity of 123.2 mA h g after 500 cycles at 5.0 C (a capacity retention rate of 93.1 %).

摘要

随着电动汽车销量的不断增加,大量采用磷酸铁锂(LFP)阴极组装的废旧锂离子电池(LIBs)将在未来几年退役,这对其有效且环保的回收构成了重大挑战。废旧LFP阴极未能重新利用的主要原因在于锂损失导致的晶格缺陷以及应力积累造成的结构缺陷。在这项工作中,我们提出了一种原位颗粒重构策略,以在工业环境中使用甘油直接再生废旧LFP黑块(S-BM)。甘油中丰富的羟基作为电子供体,有助于还原Fe(III)并修复Fe-Li反位缺陷(Fe)。此外,甘油的螯合特性干预了结构解体的颗粒,抑制了奥斯特瓦尔德熟化效应,并促进晶界结合以生成具有均匀晶粒尺寸的层状微晶,经过简单的退火程序后恢复其形态和晶体结构。此外,再生的LFP恢复了Fe-O键,进一步抑制了结构畸变并改善了锂迁移动力学。结果,再生的工业LFP黑块(R-BM)表现出优异的锂存储性能,在5.0 C下经过500次循环后放电容量为123.2 mA h g(容量保持率为93.1%)。

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