Chen Weiping, Wang Xiang, Liang Jianyu, Chen Yao, Ma Wei, Zhang Siyuan
School of Materials Science and Engineering, Wuhan University of Technology, Wuhan 430070, China.
Department of Mechanical Engineering, Worcester Polytechnic Institute, 100 Institute Road, Worcester, MA 01609, USA.
Membranes (Basel). 2022 Jan 20;12(2):124. doi: 10.3390/membranes12020124.
The traditional commercial polyolefin separators suffer from high-temperature thermal shrinkage, low electrolyte wettability and other issues. In order to improve the overall performance of the separators, electrostatic spinning technology was applied to obtain PAN nanofiber separators with an average diameter of 320 nm. Then cellulose acetate (CA) resin and nano-hydroxyapatite (HAP) were introduced to fabricate the PAN/CA/HAP composite separators through the constant temperature hot pressing and dip-coating crafts. The composite separator has a good thermal stability, with no significant dimensional change after a constant temperature treatment of 200 °C for 35 min. The electrolyte uptake rate of the PAN/CA/HAP-1.0 composite separator reaches 281%, which exhibits an efficient ionic conductivity. At the same time, it also attains a tensile strength of 11.18 MPa, which meets the requirement for separator use. Button cells assembled from PAN/CA/HAP-1.0 composite separators have an excellent rate of performance (160.42 mAh·g at 0.2 C) and cycle capability (157.6 mAh·g after 50 cycles at 0.5 C). The results support that lithium-ion batteries assembled with PAN/CA/HAP-1.0 composite separators will exhibit higher safety stability and better electrochemical performance than that of polyolefin separators, with a very immense potential for application.
传统的商用聚烯烃隔膜存在高温热收缩、电解液润湿性低等问题。为了提高隔膜的整体性能,采用静电纺丝技术制备了平均直径为320 nm的PAN纳米纤维隔膜。然后引入醋酸纤维素(CA)树脂和纳米羟基磷灰石(HAP),通过恒温热压和浸涂工艺制备PAN/CA/HAP复合隔膜。该复合隔膜具有良好的热稳定性,在200℃恒温处理35 min后尺寸无明显变化。PAN/CA/HAP-1.0复合隔膜的电解液吸收率达到281%,表现出高效的离子电导率。同时,其拉伸强度达到11.18 MPa,满足隔膜使用要求。由PAN/CA/HAP-1.0复合隔膜组装的纽扣电池具有优异的倍率性能(0.2 C时为160.42 mAh·g)和循环性能(0.5 C下50次循环后为157.6 mAh·g)。结果表明,与聚烯烃隔膜相比,采用PAN/CA/HAP-1.0复合隔膜组装的锂离子电池将表现出更高的安全稳定性和更好的电化学性能,具有非常巨大的应用潜力。