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Pseudocapacitance-boosted ultrafast Na storage in a pie-like FeS@C nanohybrid as an advanced anode material for sodium-ion full batteries

机译:Pseudocapacitance-boosted超速Na存储一个包子状FeS@C nanohybrid作为先进的阳极材料也是钠电池

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摘要

In order to develop promising anode materials for sodium-ion batteries (SIBs), a novel pie-like FeS@C (P-FeS@C) nanohybrid, in which all ultrasmall FeS nanocrystals (NCs) are completely embedded into the carbon network and sealed by a protective carbon shell, has been prepared. The unique pie-like structure can effectively speed up the kinetics of electrode reactions, while the carbon shell stabilizes the FeS NCs inside. Studies show that the electrochemical reaction processes of P-FeS@C electrodes are dominated by the pseudocapacitive behavior, leading to an ultrafast Na+-insertion/extraction reaction. Hence, the prepared P-FeS@C nanohybrid exhibits superior Na-storage properties especially high rate capability in half cells. For example, it can deliver reversible capacities of 555.1 mA h g(-1) at 0.2 A g(-1) over 150 cycles and about 60.4 mA h g(-1). at 80 A g(-1) (an ultrahigh current density even higher than that of the capacitor test). Furthermore, an advanced P FeS@C/iNa(3)V(2) (PO4)(2)O2F full cell has been assembled out, which delivers a stable specific capacity of 441.2 mA h g(-1) after 80 cycles at 0.5 A g(-1) with a capacity retention of 91.8.
机译:为了发展有前途的阳极材料包子状的钠电池(兄弟姐妹),一本小说所有的FeS@C nanohybrid (P-FeS@C)超小菲斯完全纳米晶体(nc)嵌入碳网络和密封保护碳壳,已经准备好了。独特的包子状结构可以有效地速度电极反应的动力学,而碳壳稳定菲斯nc在里面。研究表明,电化学反应P-FeS@C电极由的过程pseudocapacitive行为,导致一个超快的Na +插入/萃取反应。因此,准备P-FeS@C nanohybrid展品上级Na-storage属性特别高比例在一半的细胞功能。马能可逆容量为555.1 h0.2 g(1)和g(1)超过150周期60.4 mA h g(1)。电流密度比更高电容测试)。FeS@C / iNa V (2) (3) (PO4) (2) O2F完整细胞组装,这提供了一个稳定的具体441.2 mA h g容量80周期后(1)0.5 g(1)能力保留91.8%。

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