科研成果
杨娟、汪的华的论文在GREEN CHEMISTRY 刊出
发布时间:2020-10-22 14:47:34     发布者:易真     浏览次数:

标题: One-pot compositional and structural regeneration of degraded LiCoO(2)for directly reusing it as a high-performance lithium-ion battery cathode

作者: Yang, J (Yang, Juan); Wang, WY (Wang, Wenyu); Yang, HM (Yang, Huimeng); Wang, DH (Wang, Dihua)

来源出版物: GREEN CHEMISTRY  : 22  : 19  : 6489-6496  DOI: 10.1039/d0gc02662j  出版年: OCT 7 2020  

摘要: Recycling spent cathodes from Li-ion batteries (LIBs) is an appealing route to address environmental issues and resource shortage, but is plagued by effective and simple recycling techniques. Current recycling technologies generally involve multi-steps such as acid leaching, precipitation, smelting, or solid-state sintering, and obtained products possess inferior electrochemical properties. The current work explores a new regeneration method for failed LiCoO(2)cathode material. The electrochemical performance of LiCoO(2)is fully recovered through a single thermal-chemical treatment of spent LiCoO(2)in molten LiOH-KOH-Li(2)CO(3)under air atmosphere. The molten salt mixture presents suitable dissolving capacity, homogeneous thermal circumstance, abundant Li+, and high ion diffusion rate to decompose impurities, compensate for Li(+)deficiency, and repair damaged structure through a "dissolution-recrystallization" mechanism. Under the optimized reaction temperature of 500 degrees C, the regenerated LiCoO(2)possessed similar stoichiometric composition and crystalline structure of commercial LiCoO2. Importantly, the discharge capacity of spent LiCoO(2)was recovered from 68.3 mA h g(-1)to 144.5 mA h g(-1), reaching the original level of commercial LiCoO2. Besides, the regenerated LiCoO(2)also delivered superior cycling of 92.5% capacity retention after 200 cycles and excellent rate performance. This work presents an effective and extendable approach to regenerate spent cathode materials to retrieve their electrochemical performance.

入藏号: WOS:000575015700019

语言: English

文献类型: Article

地址: [Yang, Juan; Wang, Wenyu; Yang, Huimeng; Wang, Dihua] Wuhan Univ, Int Cooperat Base Sustainable Utilizat Resources, Sch Resource & Environm Sci, Wuhan 430072, Peoples R China.

通讯作者地址: Wang, DH (通讯作者)Wuhan Univ, Int Cooperat Base Sustainable Utilizat Resources, Sch Resource & Environm Sci, Wuhan 430072, Peoples R China.

电子邮件地址: wangdh@whu.edu.cn

影响因子:9.48


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