Rakhimbek Islam, Baikalov Nurzhan, Konarov Aishuak, Mentbayeva Almagul, Zhang Yongguang, Bakenov Zhumabay
National Laboratory Astana, Nazarbayev University Astana 010000 Kazakhstan
Department of Chemical and Materials Engineering, Nazarbayev University Astana 010000 Kazakhstan.
Nanoscale Adv. 2023 Dec 6;6(2):578-589. doi: 10.1039/d3na00785e. eCollection 2024 Jan 16.
Lithium-sulfur (Li-S) batteries are attracting tremendous attention owing to their critical advantages, such as high theoretical capacity of sulfur, cost-effectiveness, and environment-friendliness. Nevertheless, the vast commercialisation of Li-S batteries is severely hindered by sharp capacity decay upon operation and shortened cycle life because of the insulating nature of sulfur along with the solubility of intermediate redox products, lithium polysulfides (LiPSs), in electrolytes. This work proposes the use of multifunctional Ni/NiO-embedded carbon nanofibers (Ni/NiO@CNFs) synthesized by an electrospinning technique with the corresponding heat treatment as promising free-standing current collectors to enhance the kinetics of LiPS redox reactions and to provide prolonged cyclability by utilizing more efficient active materials. The electrochemical performance of the Li-S batteries with Ni/NiO@CNFs with ∼2.0 mg cm sulfur loading at 0.5 and 1.0C current densities delivered initial specific capacities of 1335.1 mA h g and 1190.4 mA h g, retrieving high-capacity retention of 77% and 70% after 100 and 200 cycles, respectively. The outcomes of this work disclose the beneficial auxiliary effect of metal and metal oxide nanoparticle embedment onto carbon nanofiber mats as being attractively suited up to achieve high-performance Li-S batteries.
锂硫(Li-S)电池因其诸多关键优势,如硫的理论容量高、成本效益高和环境友好等,正吸引着极大的关注。然而,由于硫的绝缘性质以及中间氧化还原产物多硫化锂(LiPSs)在电解质中的溶解性,Li-S电池在运行时容量急剧衰减且循环寿命缩短,这严重阻碍了其大规模商业化。这项工作提出使用通过静电纺丝技术合成并经过相应热处理的多功能镍/氧化镍嵌入碳纳米纤维(Ni/NiO@CNFs)作为有前景的独立集流体,以增强LiPS氧化还原反应的动力学,并通过利用更高效的活性材料来提供更长的循环稳定性。在0.5和1.0C电流密度下,硫负载量约为2.0 mg cm的含Ni/NiO@CNFs的Li-S电池的电化学性能分别提供了1335.1 mA h g和1190.4 mA h g的初始比容量,在100和200次循环后分别保持了77%和70%的高容量保持率。这项工作的结果揭示了金属和金属氧化物纳米颗粒嵌入碳纳米纤维垫的有益辅助作用,非常适合用于实现高性能Li-S电池。