Du Zhuzhu, Chen Xin, Du Hongfang, Zhao Ying, Liu Yuhang, Ai Wei
School of Materials Science and Engineering, Institute of Flexible Electronics and Intelligent Textile, Xi'an Polytechnic University, Xi'an 710048, China.
Frontiers Science Center for Flexible Electronics, Shaanxi Institute of Flexible Electronics, Northwestern Polytechnical University, Xi'an 710072, China.
Nanomaterials (Basel). 2024 Jul 20;14(14):1229. doi: 10.3390/nano14141229.
Separator modification is a promising method for advancing lithium metal anodes; however, achieving homogeneous lithium-ion flux and uniform plating/stripping processes remains challenging. In this work, we introduce a novel approach by developing a composite separator, termed PVDF-INO, which integrates In(NO) (INO) into polyvinylidene fluoride (PVDF) to create a 12 μm thick layer. This addition significantly enhances the interaction between the separator and the electrolyte, creating a lithophilic matrix that ensures an even distribution of lithium ions. This uniform ion distribution promotes consistent lithium deposition and dissolution, resulting in a durable, dendrite-free lithium metal anode. Moreover, the PVDF-INO separator not only enhances the affinity with electrolytes but also maintains stable lithium-ion flux, which is essential for reliable and safe battery operation. Consequently, it sustains operation over 750 h in a Li||Li symmetric battery configuration, with a low overpotential of just 28 mV. Additionally, full cells equipped with LiFePO cathodes and the PVDF-INO separator exhibit superior cycling performance, maintaining a capacity retention of 92.9% after 800 cycles at 1 C. This work paves the way for significant advancements in the field of lithium metal batteries, offering a promising solution to longstanding energy storage challenges.
隔膜改性是推进锂金属负极发展的一种很有前景的方法;然而,实现均匀的锂离子通量和均匀的电镀/剥离过程仍然具有挑战性。在这项工作中,我们通过开发一种称为PVDF-INO的复合隔膜引入了一种新方法,该隔膜将硝酸铟(INO)整合到聚偏氟乙烯(PVDF)中,形成一个12μm厚的层。这种添加显著增强了隔膜与电解质之间的相互作用,形成了一个亲锂基质,确保锂离子均匀分布。这种均匀的离子分布促进了锂的一致沉积和溶解,从而得到耐用、无枝晶的锂金属负极。此外,PVDF-INO隔膜不仅增强了与电解质的亲和力,还保持了稳定的锂离子通量,这对于可靠和安全的电池运行至关重要。因此,在Li||Li对称电池配置中它能持续运行超过750小时,过电位低至仅28mV。此外,配备磷酸铁锂正极和PVDF-INO隔膜的全电池表现出优异的循环性能,在1C下800次循环后容量保持率为92.9%。这项工作为锂金属电池领域的重大进展铺平了道路,为长期存在的储能挑战提供了一个有前景的解决方案。