Li Jianhui, Xing Lidan, Wang Zaisheng, Tu Wenqiang, Yang Xuerui, Lin Yilong, Liao Yuqing, Xu Mengqing, Li Weishan
Engineering Research Center of MTEES (Ministry of Education), Research Center of BMET (Guangdong Province), Key Lab. of ETESPG (GHEI), Innovative Platform for ITBMD (Guangzhou Municipality), School of Chemistry and Environment, South China Normal University Guangzhou 510006 China
RSC Adv. 2018 Jul 18;8(45):25794-25801. doi: 10.1039/c8ra03852j. eCollection 2018 Jul 16.
The capacity fading of layered lithium-rich oxide (LiMnNiCoO, LLO) cathodes greatly hinders their practical application in next generation lithium ion batteries. It has been demonstrated in this work that the slow capacity fading of a LLO/Li cell within 120 cycles is mainly caused by electrolyte oxidation and LLO phase transformation with Ni dissolution. After 120 cycles, the dissolution of Mn becomes worse than that of Ni, leading to structural destruction of the generated spinel phase structure of LLO and fast capacity fading. Tripropyl borate (TPB) is proposed as a film-forming electrolyte additive, which shows a great capability to enhance the cycling stability of LLO/Li, with a capacity retention improvement from 21% to 78% after 250 cycles at 0.5C. Electrochemical and physical characterization demonstrated that the TPB-derived SEI film shows great capability to suppress electrolyte oxidation and the structural destruction of the generated spinel phase of LLO.
层状富锂氧化物(LiMnNiCoO,LLO)正极的容量衰减严重阻碍了其在下一代锂离子电池中的实际应用。本工作表明,LLO/Li电池在120次循环内缓慢的容量衰减主要是由电解质氧化以及LLO相变和Ni溶解引起的。120次循环后,Mn的溶解比Ni更严重,导致LLO生成的尖晶石相结构的结构破坏和快速容量衰减。硼酸三丙酯(TPB)被提议作为一种成膜电解质添加剂,它具有极大的能力来提高LLO/Li的循环稳定性,在0.5C下250次循环后容量保持率从21%提高到78%。电化学和物理表征表明,TPB衍生的SEI膜具有很强的抑制电解质氧化和LLO生成的尖晶石相结构破坏的能力。