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High-Capacity and Ultrafast Na-Ion Storage of a Self-Supported 3D Porous Antimony Persulfide-Graphene Foam Architecture

机译:自支撑3D多孔锑脱硫 - 石墨烯泡沫建筑的高容量和超快Na离子储存

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摘要

The key challenge for high-performance sodium-ion batteries is the exploitation of appropriate electrode materials with a long cycling stability and high rate capability. Here, we report Sb2S5, nanoparticles (similar to 5 nm) uniformly encapsulated in three-dimensional (3D) porous graphene foam, which were fabricated by a facile hydrothermal coassembly strategy, as a high-performance anode material for sodium-ion batteries. The as-prepared composite can be directly used as electrodes without adding a binder or current collector, exhibiting outstanding electrochemical performance with a high reversible capacity (845 mA h g(-1) at 0.1 A g(-1)), ultralong cycling life (91.6% capacity retention after 300 cycles at 0.2 A g(-1)), and exceptional rate capability (525 mA h g(-1) at 10.0 A g(-1)). This is attributed to fast Na+ ion diffusion from the ultrasmall nanoparticles and excellent electric transport between the active material and 3D porous graphene, which also provide an effective strategy for anchoring the nanoparticles. Experimental results show that the Sb2S5 undergoes a reversible reaction of Sb2S5 + 16Na <-> 5Na(2)S + 2Na(3)Sb during sodiation/desodiation. Moreover, a full cell with Na-3(VO0.5)(2)(PO4)(2)F-2/C cathode and the as-prepared composite anode was assembled, displaying high output voltage (similar to 2.2 V) with a stable capacity of 828 mA h g(-1) for anode material (with 100 cycles at 0.1 A g(-1)), showing the potential for practical application.
机译:高性能钠离子电池的关键挑战是利用具有长循环稳定性和高速率能力的适当电极材料。这里,我们将SB2S5,纳米颗粒(类似于5nm)均匀地包裹在三维(3D)多孔石墨烯泡沫中,其通过容易水热共组合策略制造,作为钠离子电池的高性能阳极材料。当制备的复合材料可以直接用作电极而不加入粘合剂或集电器,具有高可逆容量(845mA Hg(-1)的高可逆容量(845 mA Hg(-1)),超龙循环寿命(在0.2Ag(-1)的300次循环后91.6%的容量保留,以及出色的速率能力(525 mA Hg(-1),10.0g(-1))。这归因于来自超超纳米颗粒的快速Na +离子扩散和活性材料和3D多孔石墨烯之间的优异电动输送,这还提供了锚固纳米颗粒的有效策略。实验结果表明,SB2S5在调解/退出期间经历SB2S5 + 16NA < - 16NA(2)S + 2NA(3)SB的可逆反应。此外,组装了具有Na-3(Vo0.5)(2)(PO4)(2)F-2 / C阴极和用作制备的复合阳极的全细胞,显示高输出电压(类似于2.2 V)阳极材料的828 mA Hg(-1)的稳定容量(0.1Ag(-1)的100个循环),显示出实际应用的可能性。

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