Haridas Anupriya K, Lim Ji-Eun, Lim Du-Hyun, Kim Jeha, Cho Kwon Koo, Matic Aleksandar, Kim Jae-Kwang, Ahn Jou-Hyeon
Department of Materials Engineering and Convergence Technology Research Institute for Green Energy Convergence Technology, Gyeongsang National University, 501 Jinju-daero, Jinju, 52828, Republic of Korea.
Department Solar & Energy Engineering, Cheongju University, Cheongju, Chungbuk, 360-764, Republic of Korea.
ChemSusChem. 2018 Oct 24;11(20):3625-3630. doi: 10.1002/cssc.201801587. Epub 2018 Sep 14.
FeS /C core-shell nanofiber webs were synthesized for the first time by a unique synthesis strategy that couples electrospinning and carbon coating of the nanofibers with sucrose. The design of the one-dimensional core-shell morphology was found to be greatly beneficial for accommodating the volume changes encountered during cycling, to induce shorter lithium ion diffusion pathways in the electrode, and to prevent sulfur dissolution during cycling. A high discharge capacity of 545 mAh g was retained after 500 cycles at 1 C, exhibiting excellent stable cycling performance with 98.8 % capacity retention at the last cycle. High specific capacities of 854 mAh g , 518 mAh g , and 208 mAh g were obtained at 0.1 C, 1 C, and 10 C rates, respectively, demonstrating the exceptional rate capability of this nanofiber web cathode.
首次通过一种独特的合成策略合成了FeS/C核壳纳米纤维网,该策略将静电纺丝与用蔗糖对纳米纤维进行碳包覆相结合。一维核壳形态的设计被发现对于适应循环过程中遇到的体积变化、在电极中诱导更短的锂离子扩散路径以及防止循环过程中的硫溶解非常有益。在1C下循环500次后,仍保持545 mAh g的高放电容量,在最后一个循环中容量保持率为98.8%,表现出优异的稳定循环性能。在0.1C、1C和10C倍率下分别获得了854 mAh g、518 mAh g和208 mAh g的高比容量,证明了这种纳米纤维网阴极具有出色的倍率性能。