Department of Chemical and Biomolecular Engineering, University of Maryland , College Park, Maryland 20742, United States.
ACS Nano. 2013 Sep 24;7(9):8003-10. doi: 10.1021/nn403108w. Epub 2013 Aug 19.
Selenium-impregnated carbon composites were synthesized by infusing Se into mesoporous carbon at a temperature of 600 °C under vacuum. Ring-structured Se8 was produced and confined in the mesoporous carbon, which acts as an electronic conductive matrix. During the electrochemical process in low-cost LiPF6/EC/DEC electrolyte, low-order polyselenide intermediates formed and were stabilized by mesoporous carbon, which avoided the shuttle reaction of polyselenides. Exceptional electrochemical performance of Se/mesoporous carbon composites was demonstrated in both Li-ion and Na-ion batteries. In lithium-ion batteries, Se8/mesoporous carbon composite cathodes delivered a reversible capacity of 480 mAh g(-1) for 1000 charge/discharge cycles without any capacity loss, while in Na-ion batteries, it provided initial capacity of 485 mAh g(-1) and retained 340 mAh g(-1) after 380 cycles. The Se8/mesoporous carbon composites also showed excellent rate capability. As the current density increased from 0.1 to 5 C, the capacity retained about 46% in Li-ion batteries and 34% in Na-ion batteries.
硒浸渍碳复合材料是通过在 600°C 的真空条件下将硒注入介孔碳中合成的。生成了具有环状结构的 Se8,并将其限制在作为电子导电基质的介孔碳中。在低成本的 LiPF6/EC/DEC 电解质中的电化学过程中,形成了低阶多硒化物中间体,并被介孔碳稳定,从而避免了多硒化物的穿梭反应。硒/介孔碳复合材料在锂离子和钠离子电池中均表现出了优异的电化学性能。在锂离子电池中,Se8/介孔碳复合正极在 1000 次充放电循环中具有 480 mAh g(-1)的可逆容量,没有任何容量损失,而在钠离子电池中,它提供了 485 mAh g(-1)的初始容量,并在 380 次循环后保留了 340 mAh g(-1)。Se8/介孔碳复合材料还表现出优异的倍率性能。当电流密度从 0.1 增加到 5 C 时,在锂离子电池中保留了约 46%的容量,在钠离子电池中保留了 34%的容量。