School of Chemistry and Chemical Engineering of Hainan Normal University, Key Laboratory of Electrochemical Energy Storage and Energy Conversion of Hainan Province, Key Laboratory of Electrochemical Energy Storage and Light Energy Conversion Materials of Haikou City, Haikou 571158, China.
School of Chemistry and Chemical Engineering of Hainan Normal University, Key Laboratory of Electrochemical Energy Storage and Energy Conversion of Hainan Province, Key Laboratory of Electrochemical Energy Storage and Light Energy Conversion Materials of Haikou City, Haikou 571158, China.
Bioresour Technol. 2024 Mar;395:130388. doi: 10.1016/j.biortech.2024.130388. Epub 2024 Jan 28.
To improve the electrochemical performance of Li-S batteries, a cathodic material (rGO/S/CF-75) was fabricated for Li-S batteries by adopting a melt-flow method to load sulfur on biomass-derived carbon fibers, then the reduced graphene oxide was electrochemically covered on the outside surface of the sulfur. The coverage of reduced graphite oxide layers endows the performance of S/CF-75 multiple improvements. The specific capacity of rGO/S/CF-75 cathode delivers a specific capacity of 1451.4 mAh g at 0.1 A g. The specific capacity of rGO/S/CF-75 cathode can still maintain 537.3 mAh g after 1000 cycles at 5 A g (109 % capacity retention). The excellent performance of rGO/S/CF-75 cathode is benefit from not only the conductive paths of reduced graphene oxide layers and protective function of reduced graphene oxide layers inhibiting that the soluble sulfur diffuse into bulk electrolyte, but also the redistribution of sulfur on conductive carbon components during the cycling process.
为了提高锂硫电池的电化学性能,采用熔融纺丝法将硫负载在生物质衍生碳纤维上,制备了一种阴极材料(rGO/S/CF-75)用于锂硫电池,然后在硫的外表面电化学覆盖还原氧化石墨烯。还原氧化石墨烯层的覆盖赋予了 S/CF-75 多种性能的提升。rGO/S/CF-75 正极的比容量在 0.1 A g 下达到 1451.4 mAh g。在 5 A g(容量保持率为 109%)下循环 1000 次后,rGO/S/CF-75 正极的比容量仍能保持 537.3 mAh g。rGO/S/CF-75 正极的优异性能不仅得益于还原氧化石墨烯层的导电路径和还原氧化石墨烯层的保护功能抑制了可溶性硫向电解质本体的扩散,还得益于在循环过程中硫在导电碳组分上的再分布。