Materials Science and Engineering Program and Texas Materials Institute, University of Texas at Austin, Austin, TX, 78712, USA.
Adv Mater. 2018 Nov;30(46):e1805571. doi: 10.1002/adma.201805571. Epub 2018 Oct 4.
Lithium-sulfur batteries are among the most promising low-cost, high-energy-density storage devices. However, the inability to host a sufficient amount of sulfur in the cathode while maintaining good electrochemical stability under a lean electrolyte condition has limited the progress. The main cause of these challenges is the sensitivity of the sulfur cathode to the cell-design parameters (i.e., the amount of sulfur and electrolyte) and the experimental testing conditions (i.e., cycling rates and analysis duration). Here, a hot-pressing method is presented that effectively encapsulates a high amount of sulfur in the cathode within only 5 s, resulting in high sulfur loading and content of, respectively, 10 mg cm and 65 wt%. The hot-pressed sulfur (HPS) cathodes exhibit superior dynamic and static electrochemical performance under a broad cycling-rate (C/20-1C rates) and low electrolyte/sulfur ratio (6 µL mg ) conditions. The dynamic cell stability is demonstrated by high gravimetric and areal capacities of, respectively, 415-730 mAh g and 7-12 mAh cm at C/20-1C rates with a high capacity retention of over 70% after 200 cycles. The static cell stability is demonstrated by excellent shelf life with low self-discharge and stable cycle life on storing for over one year.
锂硫电池是最有前途的低成本、高能量密度储能设备之一。然而,在贫电解质条件下保持良好的电化学稳定性的同时,无法在阴极中容纳足够数量的硫,这限制了其发展。这些挑战的主要原因是硫阴极对电池设计参数(即硫和电解质的量)和实验测试条件(即循环速率和分析持续时间)的敏感性。在这里,提出了一种热压方法,该方法可在 5 s 内有效地将大量硫封装在阴极内,从而实现高硫负载量和高硫含量,分别为 10 mg cm 和 65wt%。在宽循环速率(C/20-1C 速率)和低电解质/硫比(6 µL mg)条件下,热压硫(HPS)阴极表现出优异的动态和静态电化学性能。通过在 C/20-1C 速率下分别具有 415-730 mAh g和 7-12 mAh cm的高重量和面积容量以及超过 200 次循环后超过 70%的高容量保持率,证明了动态电池的稳定性。通过低自放电和在储存超过一年后稳定的循环寿命,证明了静态电池的稳定性。