Yi Ruowei, Zhao Yinchao, Liu Chenguang, Sun Yi, Zhao Chun, Li Yinqing, Yang Li, Zhao Cezhou
Department of Chemistry, Xi'an Jiaotong-Liverpool University, Suzhou 215123, China.
Stephenson Institute for Renewable Energy, Department of Chemistry, University of Liverpool, Liverpool L69 7ZD, UK.
Nanomaterials (Basel). 2022 Oct 26;12(21):3770. doi: 10.3390/nano12213770.
The nitrogen-doped MXene carbon nanosheet-nickel (N-M@CNi) powder was successfully prepared by a combined process of electrostatic attraction and annealing strategy, and then applied as the separator coating in lithium-sulfur batteries. The morphology and structure of the N-M@CNi were characterized by transmission electron microscopy (TEM), scanning electron microscopy (SEM), Raman spectrum, X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), and nitrogen adsorption-desorption method. The strong LiPS adsorption ability and high conductivity are associated with the N-doped carbon nanosheet-Ni modified surface. The modified separator offers the cathode of Li-S cell with greater sulfur utilization, better high-rate adaptability, and more stable cycling performance compared with the pristine separator. At 0.2 C the cell with N-M@CNi separator delivers an initial capacity of 1309 mAh g. More importantly, the N-M@CNi separator is able to handle a cathode with 3.18 mg cm sulfur loading, delivering a capacity decay rate of 0.043% with a high capacity retention of 95.8%. Therefore, this work may provide a feasible approach to separator modification materials towards improved Li-S cells with improved stability.
通过静电吸引和退火策略相结合的方法成功制备了氮掺杂的MXene碳纳米片-镍(N-M@CNi)粉末,然后将其用作锂硫电池的隔膜涂层。采用透射电子显微镜(TEM)、扫描电子显微镜(SEM)、拉曼光谱、X射线衍射(XRD)、X射线光电子能谱(XPS)和氮吸附-脱附法对N-M@CNi的形貌和结构进行了表征。强的锂多硫化物吸附能力和高导电性与氮掺杂的碳纳米片-镍修饰表面有关。与原始隔膜相比,改性隔膜为锂硫电池的正极提供了更高的硫利用率、更好的高倍率适应性和更稳定的循环性能。在0.2 C时,使用N-M@CNi隔膜的电池初始容量为1309 mAh g。更重要的是,N-M@CNi隔膜能够处理硫负载量为3.18 mg cm的正极,容量衰减率为0.043%,高容量保持率为95.8%。因此,这项工作可能为隔膜改性材料提供一种可行的方法,以改进锂硫电池的稳定性。