Yang Guoping, Cai Haopeng, Li Xiangyu, Wu Mengjun, Yin Xue, Zhang Haining, Tang Haolin
School of Materials Science and Engineering, Wuhan University of Technology Wuhan 430070 China
Institute of Advanced Material Manufacturing Equipment and Technology, Wuhan University of Technology Wuhan 430070 People's Republic of China.
RSC Adv. 2020 Jan 30;10(9):5077-5087. doi: 10.1039/c9ra08273e. eCollection 2020 Jan 29.
Employing electrostatic self-assembly and free radical polymerization, the surface of SiO nanospheres was coated with poly(2-acrylamido-2-methylpropanesulfonic acid) (SiO@PAMPS) bearing strong electron withdrawing sulfonic and amide groups, enhancing the dissociation ability of the lithium salt of the liquid electrolyte and absorbing anions hydrogen bonds. After SiO@PAMPS nanospheres were introduced into the polypropylene (PP) membrane (SiO@PAMPS/PP), the electrolyte affinity and electrolyte uptake of the composite separators were significantly improved. The ionic conductivity of SiO@PAMPS/PP-18% (where 18% represents the concentration of the solution used for coating) soaked in liquid electrolyte was even 0.728 mS cm at 30 °C, much higher than that of the pristine PP membrane. The LiFePO/Li half-cell with SiO@PAMPS/PP-18% had a discharge capacity of 148.10 mA h g and retained 98.67% of the original capacity even after 120 cycles at 0.5C. Even at a rate of 1.0C, the cell capacity could be maintained above 120 mA h g. Therefore, a coating formula was developed that could considerably improve the cycling ability and high rate charge-discharge performance of lithium ion batteries.
通过静电自组装和自由基聚合,在SiO纳米球表面包覆了带有强吸电子磺酸基和酰胺基的聚(2-丙烯酰胺基-2-甲基丙烷磺酸)(SiO@PAMPS),增强了液体电解质锂盐的解离能力并通过氢键吸收阴离子。将SiO@PAMPS纳米球引入聚丙烯(PP)膜(SiO@PAMPS/PP)后,复合隔膜的电解质亲和力和电解质吸收率显著提高。浸泡在液体电解质中的SiO@PAMPS/PP-18%(其中18%代表用于涂层的溶液浓度)在30℃时的离子电导率甚至达到0.728 mS/cm,远高于原始PP膜。具有SiO@PAMPS/PP-18%的LiFePO/Li半电池的放电容量为148.10 mA h/g,即使在0.5C下循环120次后仍保留原始容量的98.67%。即使在1.0C的倍率下,电池容量也能保持在120 mA h/g以上。因此,开发了一种涂层配方,可显著提高锂离子电池的循环能力和高倍率充放电性能。