Co-Innovation Center of Efficient Processing and Utilization of Forest Resource, School of Materials Science and Engineering, Nanjing Forestry University, Nanjing, Jiangsu 210037, China.
Co-Innovation Center of Efficient Processing and Utilization of Forest Resource, School of Materials Science and Engineering, Nanjing Forestry University, Nanjing, Jiangsu 210037, China.
Carbohydr Polym. 2022 Nov 15;296:119950. doi: 10.1016/j.carbpol.2022.119950. Epub 2022 Aug 4.
Sulfurized polyacrylonitrile (SPAN) have been regarded as a promising cathode in high-energy-density lithium-sulfur batteries. However, severe safety issues derived from the electrolyte leakage and the uncontrollable lithium dendrite growth have seriously hindered the practical usage of Li-SPAN batteries. To address these issues, an eco-friendly and porous cellulose gel electrolyte (GE) was designed and prepared by UV photopolymerization and phase inversion methods. Also, covalent functional black phosphorous nanosheets (denoted as BP-Li) were fabricated and chosen as superior Li conductors in cellulose GE, ensuring the rapid ion transmission and suppressing the growth of lithium dendrites. As expected, the cellulose/BP-Li GE exhibited satisfactory ionic conductivity up to 5.21 × 10 S cm with the high lithium ion transference number of 0.72. The Li-SPAN battery assembled with cellulose/BP-Li GE delivered high capacity of 938.8 mAh g after 500 cycles with the capacity retention of 72.8 %. Hence, the cellulose/BP-Li GE displayed its promising usage in Li-SPAN batteries.
硫化聚丙烯腈 (SPAN) 已被视为高能密度锂硫电池有前途的阴极。然而,电解质泄漏和不可控的锂枝晶生长所带来的严重安全问题严重阻碍了 Li-SPAN 电池的实际应用。为了解决这些问题,通过紫外光聚合和相转化方法设计并制备了一种环保且多孔的纤维素凝胶电解质 (GE)。此外,还制备了共价功能化黑磷纳米片 (记为 BP-Li),并选择其作为纤维素 GE 中的优异锂离子导体,确保了快速的离子传输并抑制了锂枝晶的生长。正如预期的那样,纤维素 /BP-Li GE 表现出令人满意的离子电导率高达 5.21×10 S cm,锂离子迁移数高达 0.72。组装有纤维素 /BP-Li GE 的 Li-SPAN 电池在 500 次循环后具有 938.8 mAh g 的高容量,容量保持率为 72.8%。因此,纤维素 /BP-Li GE 显示出在 Li-SPAN 电池中具有广阔的应用前景。