Guan De-Hui, Wang Xiao-Xue, Miao Cheng-Lin, Li Jia-Xin, Li Jian-You, Yuan Xin-Yuan, Ma Xin-Yue, Xu Ji-Jing
State Key Laboratory of Inorganic Synthesis and Preparative Chemistry, College of Chemistry, Jilin University, Changchun 130012, China.
International Center of Future Science, Jilin University, Changchun 130012, China.
ACS Nano. 2024 Dec 17;18(50):34299-34311. doi: 10.1021/acsnano.4c12712. Epub 2024 Dec 7.
High-energy lithium (Li)-based batteries, especially rechargeable Li-CO batteries with CO fixation capability and high energy density, are desirable for electrified transportation and other applications. However, the challenges of poor stability, low energy efficiency, and leakage of liquid electrolytes hinder the development of Li-CO batteries. Herein, a highly conductive and stable metalorganic framework-encapsulated ionic liquid (IL@MOF) electrolyte system is developed for quasi-solid-state Li-CO batteries. Benefiting from the host-guest interaction of MOFs with open micromesopores and internal IL, the optimized IL@MOF electrolytes exhibit a high ionic conductivity of 1.03 mS cm and a high transference number of 0.80 at room temperature. The IL@MOF electrolytes also feature a wide electrochemical stability window (4.71 V versus Li/Li) and a wide working temperature (-60 °C ∼ 150 °C). The IL@MOF electrolytes also enable Li and electrons transport in the carbon nanotubes-IL@MOF (CNT-IL@MOF) solid cathodes in quasi-solid-state Li-CO batteries, delivering a high specific capacity of 13,978 mAh g (50 mA g), a long cycle life of 441 cycles (500 mA g and 1000 mAh g), and a wide operation temperature of -60 to 150 °C. The proposed MOF-encapsulated IL electrolyte system presents a powerful strategy for developing high-energy and highly safe quasi-solid-state batteries.
高能锂基电池,特别是具有CO固定能力和高能量密度的可充电Li-CO电池,在电动交通和其他应用中具有很大的需求。然而,稳定性差、能量效率低和液体电解质泄漏等挑战阻碍了Li-CO电池的发展。在此,我们开发了一种用于准固态Li-CO电池的高导电性和稳定性的金属有机框架封装离子液体(IL@MOF)电解质体系。得益于MOF与开放的微孔和内部离子液体之间的主客体相互作用,优化后的IL@MOF电解质在室温下表现出1.03 mS cm的高离子电导率和0.80的高迁移数。IL@MOF电解质还具有宽的电化学稳定窗口(相对于Li/Li为4.71 V)和宽的工作温度范围(-60°C至150°C)。IL@MOF电解质还能使Li和电子在准固态Li-CO电池的碳纳米管-IL@MOF(CNT-IL@MOF)固体阴极中传输,提供13978 mAh g(50 mA g)的高比容量、441次循环(500 mA g和1000 mAh g)的长循环寿命以及-60至150°C的宽工作温度范围。所提出的MOF封装离子液体电解质体系为开发高能量和高安全性的准固态电池提供了一种有力的策略。