Zhao Yansong, Zhen Yingpeng, Boström Tobias
Department of Safety, Chemistry and Biomedical Laboratory Sciences, Faculty of Engineering and Science, Western Norway University of Applied Sciences (HVL), 5020 Bergen, Norway.
Department of Civil and Environmental Engineering, Norwegian University of Science and Technology (NTNU), NO-7491 Trondheim, Norway.
ACS Omega. 2022 Jul 7;7(28):24082-24090. doi: 10.1021/acsomega.1c06170. eCollection 2022 Jul 19.
A rechargeable iron-ion battery (Fe-ion battery) has been fabricated in our laboratory using a pure ionic liquid electrolyte. Magnetic ionic liquids of 1-butyl-3-methylimidazolium tetrachloroferrate (BmimFeCl) and 1-methyl-3-octylimidazolium tetrachloroferrate (OmimFeCl) are synthesized and utilized as electrolytes in this work. The chemical structure of the two ionic liquids (ILs) is investigated using Raman analysis. In addition, the physical and thermal stability properties of the ionic liquid (IL) BmimFeCl, including density, viscosity, melting point, and decomposition temperature, are investigated using a density meter, viscosity meter, differential scanning calorimeter, and thermogravimetric analyzer. Moreover, the electrochemical properties, including electrochemical window, and ionic conductivity of the IL BmimFeCl are investigated using an electrochemical instrument and a conductivity meter. It is found that the magnetic IL BmimFeCl has good physical and electrochemical properties to be utilized as an electrolyte for iron-ion battery fabrication. Iron-containing materials, including pure iron foil, carbon-coated iron nanoparticles, and iron powder, are used as a cathode in the Fe-ion battery. The anode of the Fe-ion battery is graphite. Electrochemical properties of full cells are investigated, including cyclic voltammetry curves and specific charge-discharge capacity. The Fe-ion battery is a unique rechargeable ion battery with magnetic ions. In addition, pure IL BmimFeCl is utilized as an electrolyte in this Fe-ion battery. IL BmimFeCl is stable and almost nonvolatile. Therefore, an Fe-ion battery with a pure IL electrolyte is safer than that with an organic electrolyte. An Fe-ion battery using a pure IL electrolyte is a promising battery with many potential applications.
我们实验室使用纯离子液体电解质制备了一种可充电铁离子电池(Fe离子电池)。在这项工作中,合成了1-丁基-3-甲基咪唑四氯铁酸盐(BmimFeCl)和1-甲基-3-辛基咪唑四氯铁酸盐(OmimFeCl)这两种磁性离子液体,并将其用作电解质。使用拉曼分析研究了这两种离子液体(ILs)的化学结构。此外,使用密度计、粘度计、差示扫描量热仪和热重分析仪研究了离子液体(IL)BmimFeCl的物理和热稳定性,包括密度、粘度、熔点和分解温度。此外,使用电化学仪器和电导率仪研究了IL BmimFeCl的电化学性质,包括电化学窗口和离子电导率。发现磁性IL BmimFeCl具有良好的物理和电化学性质,可作为铁离子电池制备的电解质。含铁材料,包括纯铁箔、碳包覆铁纳米颗粒和铁粉,被用作Fe离子电池的阴极。Fe离子电池的阳极是石墨。研究了全电池的电化学性质,包括循环伏安曲线和比充放电容量。Fe离子电池是一种独特的具有磁性离子的可充电离子电池。此外,纯IL BmimFeCl被用作该Fe离子电池的电解质。IL BmimFeCl稳定且几乎不挥发。因此,使用纯IL电解质的Fe离子电池比使用有机电解质的电池更安全。使用纯IL电解质的Fe离子电池是一种有前途的电池,具有许多潜在应用。