Materials Science and Technology Division, Oak Ridge National Laboratory, Oak Ridge, Tennessee 37831-6083, USA.
Langmuir. 2012 Feb 28;28(8):3783-90. doi: 10.1021/la205157d. Epub 2012 Feb 16.
Addition of dispersants to aqueous based lithium-ion battery electrode formulations containing LiFePO(4) is critical to obtaining a stable suspension. The resulting colloidal suspensions enable dramatically improved coating deposition when processing electrodes. This research examines the colloidal chemistry modifications based on polyethyleneimine (PEI) addition and dispersion characterization required to produce high quality electrode formulations and coatings for LiFePO(4) active cathode material. The isoelectric point, a key parameter in characterizing colloidal dispersion stability, of LiFePO(4) and super P C45 were determined to be pH = 4.3 and 3.4, respectively. PEI, a cationic surfactant, was found to be an effective dispersant. It is demonstrated that 1.0 wt % and 0.5 wt % PEI were required to stabilize the LiFePO(4) and super P C45 suspension, respectively. LiFePO(4) cathode suspensions with 1.5 wt % PEI demonstrated the best dispersibility of all components, as evidenced by viscosity and agglomerate size of the suspensions and elemental distribution within dry cathodes. The addition of PEI significantly improved the LiFePO(4) performance.
在含有 LiFePO(4) 的水基锂离子电池电极配方中添加分散剂对于获得稳定的悬浮液至关重要。所得胶体悬浮液在处理电极时可显著改善涂层沉积。这项研究考察了基于聚乙烯亚胺 (PEI) 加入和所需的分散特性的胶体化学修饰,以生产用于 LiFePO(4) 活性阴极材料的高质量电极配方和涂层。LiFePO(4) 和 Super P C45 的等电点,即表征胶体分散体稳定性的关键参数,分别确定为 pH = 4.3 和 3.4。PEI 是一种阳离子表面活性剂,被发现是一种有效的分散剂。结果表明,分别需要 1.0 wt%和 0.5 wt%的 PEI 来稳定 LiFePO(4)和 Super P C45 悬浮液。LiFePO(4)阴极悬浮液中添加 1.5 wt%的 PEI 可证明所有成分的分散性最佳,这可通过悬浮液的粘度和团聚体尺寸以及干阴极内元素分布来证明。PEI 的加入显著提高了 LiFePO(4)的性能。