首页> 外文期刊>Journal of solid state electrochemistry >Unraveling the role of binder concentration on the electrochemical behavior of mesocarbon microbead anode in lithium-ion batteries: understanding the formation of the solid electrolyte interphase
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Unraveling the role of binder concentration on the electrochemical behavior of mesocarbon microbead anode in lithium-ion batteries: understanding the formation of the solid electrolyte interphase

机译:解开粘合剂浓度对锂离子电池中Mesocarbon Microbead阳极电化学行为的作用:了解固体电解质间的形成

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Binders play a significant role in the electrochemical performance of anodes in lithium-ion batteries. In this study, mesocarbon microbead (MCMB) electrodes are fabricated with various binder concentrations of 4.5 wt% (MCMB-4.5), 7.5 wt% (MCMB-7.5), and 10 wt% (MCMB-10) to evaluate the optimum content of binder for a MCMB anode. The cyclic voltammetry (CV) profiles indicate a slow kinetic process of lithiation/delithiation in the MCMB-10 anode. The results demonstrate that MCMB-7.5 has the highest lithium diffusion coefficient, which represents the improved lithium diffusion kinetics of MCMB-7.5. The step-by-step electrochemical impedance spectroscopy (EIS) studies indicate that a highly conductive solid electrolyte interphase (SEI) film is formed from 0.1 to 0.01 V on MCMB-7.5 anode that not only makes up the increase of SEI resistance (R-SEI), relating to the expansion of MCMB volume, but also leads to a decrease of the R-SEI. The MCMB-4.5, MCMB-7.5, and MCMB-10 show self-discharge rates of 0.99, 0.28, and 1.09% per week, respectively. Thus, the MCMB-7.5 has the lowest level of parasitic reactions between the active material and electrolyte. Furthermore, the 7.5% binder concentration provides the best capacity retention along 100 cycles at 0.5 C rate, which can suggest as the optimum concentration of CMC/SBR for MCMB anodes.
机译:粘合剂在锂离子电池中阳极的电化学性能中起着重要作用。在该研究中,Mesocarbon Microbead(MCMB)电极由4.5wt%(MCMB-4.5),7.5wt%(MCMB-7.5)和10wt%(MCMB-10)的各种粘合剂浓度制备,以评估最佳含量用于MCMB阳极的粘合剂。循环伏安法(CV)型材表示MCMB-10阳极中的锂化/脱位的慢动过程。结果表明,MCMB-7.5具有最高的锂扩散系数,其表示MCMB-7.5的改进的锂扩散动力学。逐步的电化学阻抗光谱(EIS)表明,在MCMB-7.5阳极上的0.1至0.01V下形成高导电固体电解质相互作用(SEI)膜,不仅弥补了SEI电阻的增加(R- SEI),与MCMB体积的扩展有关,但也导致R-SEI的降低。 MCMB-4.5,MCMB-7.5和MCMB-10分别显示每周0.99,0.28和1.09%的自放电率。因此,MCMB-7.5具有活性材料和电解质之间的寄生反应水平的最低水平。此外,7.5%的粘合剂浓度沿100个循环的粘合剂浓度提供了最佳的容量保留,其可以作为MCMB阳极的CMC / SBR的最佳浓度。

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