Gendensuren Bolormaa, He Chengxiang, Oh Eun-Suok
School of Chemical Engineering, University of Ulsan 93 Daehak-ro, Nam-Gu Ulsan 44610 Republic of Korea
RSC Adv. 2020 Oct 14;10(62):37898-37904. doi: 10.1039/d0ra07557d. eCollection 2020 Oct 12.
A systematic approach for how to find an appropriate polymer binder for high-capacity LIB anodes is presented in this study. As an example, a newly-developed SAlg--PAAm binder, alginate functionalized with sulfo groups and subsequently grafted with polyacrylamide, is used for the Si/C electrode. Various characteristics of the binder polymer itself, two basic characteristics of the electrode with respect to the binder, and the effect of the binder on cell performance are subsequently investigated. In all respects, the SAlg--PAAm polymer is a very promising binder for high-capacity anodes. The sulfo groups in the binder improve the ionic conductivities in both the binder and the electrode, leading to reduced charge transfer resistance. In addition, the sulfonation of the alginate grafted with polyacrylamide significantly enhances the mechanical and adhesion properties of the binder and consequently decreases the volume change generated during cycles. These advantages of the SAlg--PAAm binder ultimately lead to a considerable enhancement in the electrochemical performance of the high-capacity Si/C electrodes.
本研究提出了一种系统的方法,用于寻找适用于高容量锂离子电池负极的聚合物粘结剂。例如,一种新开发的SAlg-PAAm粘结剂,即磺化藻酸盐并随后接枝聚丙烯酰胺,被用于硅/碳电极。随后研究了粘结剂聚合物本身的各种特性、电极相对于粘结剂的两个基本特性以及粘结剂对电池性能的影响。在各方面,SAlg-PAAm聚合物都是一种非常有前景的用于高容量负极的粘结剂。粘结剂中的磺酸基团提高了粘结剂和电极中的离子电导率,从而降低了电荷转移电阻。此外,接枝聚丙烯酰胺的藻酸盐的磺化显著增强了粘结剂的机械性能和粘附性能,因此减少了循环过程中产生的体积变化。SAlg-PAAm粘结剂的这些优点最终导致高容量硅/碳电极的电化学性能有相当大的提高。