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The influence of electrode structure on the performance of an SnS anode in Li-ion batteries: effect of the electrode particle, conductive support shape and additive

机译:电极结构对锂离子电池中SnS阳极性能的影响:电极颗粒,导电载体形状和添加剂的影响

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摘要

The electrochemical performance of tin sulfide (SnS) nanorods (NRs) as an anode for lithium-ion batteries has been evaluated, after adding a carbon coating and reduced graphene oxide (r-GO) as a conductive support. Raman spectroscopic analysis of such types of carbon-coated SnS nanorod clearly shows the influence of the size and shape of the conductive graphite crystallites on their electrochemical performance against Li/Li+. The incorporation of an r-GO support for the SnS nanorods enhances the electrochemical performance. The SnS NRs/r-GO composite with both reduced graphene oxide and a carboxymethyl cellulose binder shows better performance than the carbon-coated sample. The ex situ transmission electron microscopy studies show that the carbon coating of the SnS nanorod is ruptured during the lithiation process and the particle size is not maintained uniformly, while the r-GO composite is able to maintain its shape and size during the continuous charge-discharge process. The discharge capacity of the SnS NRs/r-GO composite was 602 mA h g(-1) at a current rate of 160 mA h g(-1) after fifty continuous charge-discharge cycles. The current observations suggest that the practical energy density need not be sacrificed for power density, provided that the carbon coatings are optimized by the careful selection of additives.
机译:在添加碳涂层和还原型氧化石墨烯(r-GO)作为导电载体后,已评估了硫化锡(SnS)纳米棒(NRs)作为锂离子电池阳极的电化学性能。此类碳包覆的SnS纳米棒的拉曼光谱分析清楚地表明了导电石墨微晶的尺寸和形状对其抗Li / Li +电化学性能的影响。掺入SnS纳米棒的r-GO载体可增强电化学性能。同时具有还原的氧化石墨烯和羧甲基纤维素粘合剂的SnS NRs / r-GO复合材料表现出比碳涂层样品更好的性能。异位透射电子显微镜研究表明,在锂化过程中,SnS纳米棒的碳涂层破裂,粒径不能保持均匀,而r-GO复合物在连续充电过程中能够保持其形状和大小。放电过程。经过五十个连续的充放电循环,SnS NRs / r-GO复合材料的放电容量为160 mA h g(-1),电流为602 mA h g(-1)。当前的观察结果表明,只要通过精心选择添加剂来优化碳涂层,就不必牺牲实际能量密度来获得功率密度。

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