College of Chemistry and Molecular Engineering , Zhengzhou University , Zhengzhou 450001 , PR China.
National Engineering and Research Center for Adv. Polymer Processing Technology , Zhengzhou University , Zhengzhou , 450001 , PR China.
ACS Appl Mater Interfaces. 2018 Jul 18;10(28):23883-23890. doi: 10.1021/acsami.8b06706. Epub 2018 Jul 2.
Na-ion batteries are one of the best technologies for large-scale applications depending on almost infinite and widespread sodium resources. However, the state-of-the-art separators cannot meet the engineering needs of large-scale sodium-ion batteries to match the intensively investigated electrode materials. Here, a kind of flexible modified cellulose acetate separator (MCA) for sodium-ion batteries was synthesized via the electrospinning process and subsequently optimizing the interface chemical groups by changing acetyl to hydroxyl partly. Upon the rational design, the flexible MCA separator exhibits high chemical stability and excellent wettability (contact angles nearly 0°) in electrolytes (EC/PC, EC/DMC, diglyme, and triglyme). Moreover, the flexible MCA separator shows high onset temperature of degradation (over 250 °C) and excellent thermal stability (no shrinkage at 220 °C). Electrochemical measurements, importantly, show that the Na-ion batteries with flexible MCA separator exhibit ultralong cycle life (93.78%, 10 000 cycles) and high rate capacity (100.1 mAh g at 10 C) in the Na/NaV(PO) (NVP) half cell (2.5-4.0 V) and good cycle performance (98.59%, 100 cycles) in the Na/SnS half cell (0.01-3 V), respectively. Moreover, the full cell (SnS/NVP) with flexible MCA separator displays the capacity of 98 mAh g and almost no reduction after 40 cycles at 0.118 A g. Thus, this work provides a kind of flexible modified cellulose acetate separator for Na-ion batteries with great potential for practical large-scale applications.
钠离子电池是最适合大规模应用的技术之一,因为其依赖于几乎无限且广泛分布的钠资源。然而,目前的分离膜技术无法满足大规模钠离子电池的工程需求,无法与经过深入研究的电极材料相匹配。在这里,通过静电纺丝工艺合成了一种用于钠离子电池的柔性改性醋酸纤维素隔膜(MCA),并通过部分将乙酰基转化为羟基来优化界面化学基团。通过合理的设计,柔性 MCA 隔膜在电解质(EC/PC、EC/DMC、二甘醇和三甘醇)中表现出高化学稳定性和优异的润湿性(接触角接近 0°)。此外,柔性 MCA 隔膜具有较高的起始降解温度(超过 250°C)和优异的热稳定性(在 220°C 时无收缩)。电化学测量重要的是表明,带有柔性 MCA 隔膜的钠离子电池在 Na/NaV(PO)(NVP)半电池(2.5-4.0 V)中具有超长循环寿命(93.78%,10000 次循环)和高倍率容量(100.1 mAh g 在 10 C 下),在 Na/SnS 半电池(0.01-3 V)中具有良好的循环性能(98.59%,100 次循环)。此外,带有柔性 MCA 隔膜的全电池(SnS/NVP)在 0.118 A g 下 40 次循环后显示出 98 mAh g 的容量,几乎没有衰减。因此,这项工作为钠离子电池提供了一种具有实际大规模应用潜力的柔性改性醋酸纤维素隔膜。