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SnO2 Quantum Dots@Graphene Framework as a High-Performance Flexible Anode Electrode for Lithium-Ion Batteries

机译:SnO2量子点@ Graphene框架作为锂离子电池的高性能柔性阳极电极

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摘要

Three-dimensional (3D) layered tin oxide quantum dots/graphene framework (SnO2 QDs@GF) were designed through anchoring SnO2 QD on the graphene surface under the hydrothermal reaction. SnO2 QDs@GF have a 3D skeleton with a large number of mesopores and ultrasmall SnO2 QDs with a large surface area. The unique design of this structure improves the specific area and promotes ion transport. The mechanically strong SnO2 QDs@GF can directly be used as the anode of lithium-ion batteries (LIBs); it displays a high reversible capacity (1300 mA h g(-1) at 100 mA g(-1)), excellent rate performance (642 mA h g(-1) at 2000 mA g(-1)), and superior cyclic stability (when the current density is 10 A g(-1), the capacity loss is less than 2% after 5000 cycles). This novel synthetic method can further be expanded for the production of other quantum dots/graphene composites with a 3D structure as high-performance electrodes for LIBs.
机译:通过在水热反应下的石墨烯表面上锚定SnO2 QD设计三维(3D)层状氧化锡量子点/石墨烯框架(SNO2 QDS @ GF)。 SnO2 QDS @ GF具有3D骨架,具有大量的中孔和超级SNO2 QD,具有大的表面积。 这种结构的独特设计改善了特定区域并促进了离子运输。 机械强的SnO2 QDS @ GF可以直接用作锂离子电池(Libs)的阳极; 它显示出高可逆容量(1300 mA Hg(-1),100 mA g(-1)),优异的速率性能(642 mA Hg(-1),2000 mA g(-1))和循环稳定性优异的循环稳定性( 当电流密度为10Ag(-1)时,5000个循环后容量损耗小于2%)。 这种新颖的合成方法可以进一步扩展,用于生产其他量子点/石墨烯复合材料,其具有3D结构作为LIB的高性能电极。

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