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Facile Synthesis of SnS2 Nanostructureswith Different Morphologies for High-Performance Supercapacitor Applications

机译:SnS2纳米结构的简便合成具有不同形态的高性能超级电容器应用

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摘要

SnS2 is an emerging candidate for an electrode material because of the considerable interlayer spaces in its crystal structures and the large surface area. SnS2 as a photocatalyst and in lithium ion batteries has been reported. On the other hand, there are only a few reports of their supercapacitor applications. In this study, sheetlike SnS2 (SL-SnS2), flowerlike SnS2 (FL-SnS2), and ellipsoid-like SnS2 (EL-SnS2) were fabricated via a facile solvothermal route using different types of solvents. The results suggested that the FL-SnS2 exhibited better capacitive performance than the SL-SnS2 and EL-SnS2, which means that the morphology has a significant effect on the electrochemical reaction. The FL-SnS2 displayed higher supercapacitor performance with a high capacity of approximately ∼431.82 F/g at a current density of 1 A/g. The remarkable electrochemical performance of the FL-SnS2 could be attributed to the large specific surface area and better average pore size. These results suggest that a suitable solvent is appropriate for the large-scale construction of SnS2 with different morphologies and also has huge potential in the practicalapplications of high-performance supercapacitors.
机译:SnS2由于其晶体结构中的大量层间空间和较大的表面积而成为电极材料的新兴候选材料。已经报道了SnS 2作为光催化剂并且用于锂离子电池中。另一方面,关于其超级电容器应用的报道很少。在这项研究中,使用不同类型的溶剂,通过简便的溶剂热途径制备了片状SnS2(SL-SnS2),花状SnS2(FL-SnS2)和椭球状SnS2(EL-SnS2)。结果表明,FL-SnS2具有比SL-SnS2和EL-SnS2更好的电容性能,这意味着形态对电化学反应有重要影响。 FL-SnS2在1 A / g的电流密度下显示出更高的超级电容器性能,约431.82 F / g的高容量。 FL-SnS2出色的电化学性能可归因于大的比表面积和更好的平均孔径。这些结果表明,合适的溶剂适合于不同形态的SnS2的大规模构建,在实际应用中具有巨大的潜力。高性能超级电容器的应用。

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