Jolley Michael J, Pathan Tanveerkhan S, Jenkins Craig, Loveridge Melanie J
Energy Innovation Centre (EIC), WMG, University of Warwick, CV4 7AL Coventry, United Kingdom.
ACS Appl Energy Mater. 2025 Jan 21;8(3):1647-1660. doi: 10.1021/acsaem.4c02672. eCollection 2025 Feb 10.
The commercialization of silicon anodes requires polymer binders that are both mechanically robust and electrochemically stable in order to ensure that they can accommodate the volume expansion experienced during cycling. In this study, we examine the use of both low and high molecular weight (MW) polyacrylic acids (PAAs), and sodium polyacrylates (Na-PAAs), at different degrees of partial neutralization, as a possible binder candidate for use in silicon graphite anodes. High MW PAAs were found to have stable capacity retentions of 672 mAh g for over 100 cycles, whereas with the low MW PAAs the capacity was found to already have declined to 373 mAh g after the first 30 cycles. Furthermore, the partial neutralization of Na-PAA binder system was found to provide superior cycling performances, as compared to non-neutralized or fully neutralized PAA systems. The high MW and partially neutralized PAAs were also found to provide the electrode coatings with higher cohesion strengths, which allow for the electrodes' microstructure to be more effectively maintained over several cycles. Overall, these findings suggest that partially neutralized and higher MW PAAs are the more suitable polymer binder candidates for use within silicon-graphite anodes.
硅阳极的商业化需要机械性能强劲且电化学稳定的聚合物粘结剂,以确保其能够适应循环过程中经历的体积膨胀。在本研究中,我们考察了不同部分中和度的低分子量和高分子量聚丙烯酸(PAA)以及聚丙烯酸钠(Na-PAA)作为硅石墨阳极潜在粘结剂的应用。高分子量PAA在超过100次循环中具有稳定的672 mAh/g容量保持率,而低分子量PAA在前30次循环后容量就已降至373 mAh/g。此外,与未中和或完全中和的PAA体系相比,Na-PAA粘结剂体系的部分中和显示出更优的循环性能。高分子量且部分中和的PAA还能使电极涂层具有更高的内聚强度,从而使电极微观结构在多个循环中更有效地得以维持。总体而言,这些发现表明部分中和且分子量较高的PAA是硅石墨阳极中更合适的聚合物粘结剂候选材料。