Zhao Jianguo, Hu Zhuan, Sun Dezhu, Jia Hong, Liu Xianming
School of Physics and Electronic Information, Luoyang Normal University, Luoyang 471934, China.
Henan Key Laboratory of Electromagnetic Transformation and Detection, Luoyang Normal University, Luoyang 471934, China.
Nanomaterials (Basel). 2019 Mar 30;9(4):492. doi: 10.3390/nano9040492.
In recent years, transitional metal sulfides have received much attention as lithium ion batteries (LIBs) anode. In this paper, FeS/C nanosheets are prepared through Fe-based metal organic frameworks (Fe-MOFs) as a precursor. The electrochemical performance of FeS/C nanosheets has been obviously improved due to the synergistic effect of the oxygen doped carbon and the special flake morphology. When the test current density is 0.1 A/g, the initial discharge capacities of FeS/C nanosheets is up to 1702 mAh/g and can retain reversible capacities of about 830 mAh/g over 150 cycles with the voltage ranging from 0.01 V to 3 V. Moreover, these composite materials are proved to have a good rate performance and the capacities reach 460 mAh/g even at a higher current density of 5 A/g. This work suggests that FeS/C nanosheets are excellent anode materials for LIBs.
近年来,过渡金属硫化物作为锂离子电池(LIBs)的负极受到了广泛关注。本文以铁基金属有机框架(Fe-MOFs)为前驱体制备了FeS/C纳米片。由于氧掺杂碳和特殊片状形态的协同作用,FeS/C纳米片的电化学性能得到了显著改善。当测试电流密度为0.1 A/g时,FeS/C纳米片的初始放电容量高达1702 mAh/g,在电压范围为0.01 V至3 V的情况下,经过150次循环仍可保持约830 mAh/g的可逆容量。此外,这些复合材料被证明具有良好的倍率性能,即使在5 A/g的更高电流密度下,容量也能达到460 mAh/g。这项工作表明FeS/C纳米片是锂离子电池优异的负极材料。