Lee Jin-Hyon, Kim Jeom-Soo, Kim Yoon Chang, Zang Dong Sik, Paik Ungyu
Division of Advanced Materials Science Engineering, Hanyang University, Seoul 133-797, Republic of Korea.
Ultramicroscopy. 2008 Sep;108(10):1256-9. doi: 10.1016/j.ultramic.2008.04.027. Epub 2008 May 8.
Aqueous-based LiFePO(4) pastes to fabricate the cathode of lithium-ion battery were investigated with an emphasis on chemical control of suspension component interactions among LiFePO(4) particulates, carbon black, carboxymethyl cellulose (CMC), and poly(acrylic acid) (PAA). The dispersion properties of LiFePO(4) were characterized using electroacoustic, flow behavior and green microstructural observation. Correlation was made between the dispersion properties and electrochemical performance of the particles. It was found that the addition of PAA significantly decreases the viscosity of the LiFePO(4) paste. The decrease of viscosity leads to increasing the solid concentration, which affects the electrochemical properties. The electrochemical characteristics of formulated pastes were evaluated using coin-type half cells. Although there is no significant difference between coin cells fabricated with CMC only and CMC/PAA combination in electrochemical cycling test, the dispersion properties of pastes indicate that the electrode fabricated with CMC/PAA, potentially, has much improved discharge capacity compared to that with CMC alone because of the possibility to increase active mass portion in electrode paste.
研究了用于制造锂离子电池阴极的水基磷酸铁锂(LiFePO₄)浆料,重点是对LiFePO₄颗粒、炭黑、羧甲基纤维素(CMC)和聚丙烯酸(PAA)之间悬浮组分相互作用的化学控制。使用电声、流动行为和绿色微观结构观察对LiFePO₄的分散性能进行了表征。建立了颗粒分散性能与电化学性能之间的相关性。发现添加PAA显著降低了LiFePO₄浆料的粘度。粘度的降低导致固体浓度增加,这影响了电化学性能。使用硬币型半电池评估了配制浆料的电化学特性。尽管在电化学循环测试中,仅使用CMC和CMC/PAA组合制造的硬币电池之间没有显著差异,但浆料的分散性能表明,与仅使用CMC的情况相比,用CMC/PAA制造的电极由于有可能增加电极浆料中的活性物质比例,其放电容量可能有很大提高。