溶剂化
电解质
溶解
化学
离解(化学)
功率密度
电池(电)
工作(物理)
化学物理
联轴节(管道)
隐溶剂化
无机化学
化学工程
能量密度
密度泛函理论
碳纤维
储能
路易斯酸
卤化物
计算化学
锂离子电池的纳米结构
纳米技术
作者
Tingting Liu,Pengfei Zhou,Longchen Li,Zhen Li,Hao Yin,Jiwen Li,Feifei Guo,Xiaozhong Wu,Jinglin Mu,Jin Zhou
标识
DOI:10.1021/acsenergylett.6c01466
摘要
Abstract Lithium/fluorinated carbon (Li/CFx) batteries are promising for mission-critical power sources, but their practical performance is hindered by solvent-dominated Li+ solvation and insulating LiF accumulation. Herein, 2-fluoro-6-methoxyphenylboronic acid (FMPB) is introduced as a dual-functional electrolyte additive to regulate LiF dissolution and Li+ solvation. Experimental and theoretical analyses reveal that the Lewis acidic B center promotes B−F coordination, lowering LiF dissociation energy and facilitating LiF dissolution. Meanwhile, electronegative O and electron-deficient B sites induce BF4− participation in the inner solvation sheath, accelerating Li+ desolvation and constructing an inorganic-rich interphase. Benefiting from these synergistic effects, Li/CFx batteries achieve a record-high power density of 88,661 W kg−1 at 492.4 Wh kg−1 (30 °C, 50 A g−1) and stable operation from −35 to 60 °C. A 2 Ah pouch cell delivers 460.3 Wh kg−1 based on the entire cell mass. This work provides a strategy for electrolyte design in high-power Li/CFx batteries.
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