Yi Shouzhong, Wang Bo, Chen Ziang, Wang Rui, Wang Dianlong
MIIT Key Laboratory of Critical Materials Technology for New Energy Conversion and Storage, School of Chemistry and Chemical Engineering, Harbin Institute of Technology 150001 Harbin China
Shenzhen Center Power Tech Co., Ltd 518120 Shenzhen China.
RSC Adv. 2018 May 22;8(33):18597-18603. doi: 10.1039/c8ra03062f. eCollection 2018 May 17.
In this work, based on the superior electrochemical stability of LiTiO (LTO) electrodes, LiFePO (LFP)/graphite cells with built-in LTO electrodes as reference electrodes were designed and fabricated. The characteristics of the LTO reference electrodes in the fabricated lithium-ion cells were measured and discussed. The experimental data demonstrated that the LTO built-in reference electrodes were simple to prepare and were feasible options for long-term monitoring of the development of potentials and other electrochemical parameters, such as the Li diffusion coefficient ( ) and electrochemical impedance spectroscopy (EIS) information, for both anodes and cathodes. Moreover, it is believed that the adoption of LTO as a reference electrode could be of great significance for long-term monitoring of the charge and discharge behavior of individual electrodes in other kinds of lithium-ion cells.
在这项工作中,基于LiTiO(LTO)电极优异的电化学稳定性,设计并制造了以内置LTO电极作为参比电极的LiFePO(LFP)/石墨电池。对所制备的锂离子电池中LTO参比电极的特性进行了测量和讨论。实验数据表明,内置LTO参比电极制备简单,是长期监测阳极和阴极电位变化以及其他电化学参数(如锂扩散系数( )和电化学阻抗谱(EIS)信息)的可行选择。此外,人们认为采用LTO作为参比电极对于长期监测其他类型锂离子电池中单个电极的充放电行为具有重要意义。