Kang Tianxing, Chen Jiahui, Cui Yan, Wang Zheng, Xu Hanliang, Ma Zhen, Zuo Xiaoxi, Xiao Xin, Nan Junmin
School of Chemistry and Environment , South China Normal University , Guangzhou 510006 , P. R. China.
Zhuhai Great Power Energy Co. Ltd. , Zhuhai 519100 , P. R. China.
ACS Appl Mater Interfaces. 2019 Jul 24;11(29):26038-26046. doi: 10.1021/acsami.9b08389. Epub 2019 Jul 8.
Three-dimensional (3D) rigidity-reinforced SiO anodes are prepared using the aqueous multicomponent binders to stabilize the performances of lithium-ion batteries. Considering an elastic skeleton, adhesiveness, electrolyte absorption, etc., four kinds of binders [polyacrylamide (PAM), poly(tetrafluoroethylene) (PTFE), carboxymethyl cellulose, and styrene butadiene rubber (SBR)] are selected to prepare aqueous multicomponent binders. The SiO anodes with the binder PAM/SBR/PTFE (PSP) exhibit a 3D rigidity-reinforced structure, larger adhesive force, and moderate electrolyte adsorption capacity compared to other anodes with single and multicomponent binders. Specifically, the electrochemical performances of the SiO anodes with the binder PSP663 are stabilized, and a retention capacity of 770 mAh g at 500 mA g after 300 cycles and a rate capacity of 993 mAh g at 1200 mA g are obtained. The enhanced performances are attributed to the good chemical stability of PTFE to protect SiO particles from the electrolyte corrosion and to ensure electrode integrity. SBR acts as the binder backbone due to the strong adhesion force and specific three-dimensional structure. The rigidity of PAM limits the excessive expansion of SiO particles well and shortens the ion migration. These results indicate that the 3D rigidity-reinforced SiO anode with the aqueous binder PSP663 has promising prospects for practical application, and the results also provide a reference for solving the expansion problem of the silicon materials.
使用水性多组分粘合剂制备三维(3D)刚性增强的SiO阳极,以稳定锂离子电池的性能。考虑到弹性骨架、粘附性、电解质吸收等因素,选择了四种粘合剂[聚丙烯酰胺(PAM)、聚四氟乙烯(PTFE)、羧甲基纤维素和丁苯橡胶(SBR)]来制备水性多组分粘合剂。与具有单一和多组分粘合剂的其他阳极相比,含有粘合剂PAM/SBR/PTFE(PSP)的SiO阳极呈现出3D刚性增强结构、更大的粘附力和适度的电解质吸附能力。具体而言,含有粘合剂PSP663的SiO阳极的电化学性能得到稳定,在300次循环后,在500 mA g下的保留容量为770 mAh g,在1200 mA g下的倍率容量为993 mAh g。性能的提高归因于PTFE良好的化学稳定性,可保护SiO颗粒免受电解质腐蚀并确保电极完整性。由于强大的粘附力和特定的三维结构,SBR充当粘合剂骨架。PAM的刚性很好地限制了SiO颗粒的过度膨胀,并缩短了离子迁移。这些结果表明,含有水性粘合剂PSP663的3D刚性增强SiO阳极具有广阔的实际应用前景,研究结果也为解决硅材料的膨胀问题提供了参考。