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首页> 外文期刊>ACS nano >Bismuth-Antimony Alloy Nanoparticle@Porous Carbon Nanosheet Composite Anode for High-Performance Potassium-Ion Batteries
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Bismuth-Antimony Alloy Nanoparticle@Porous Carbon Nanosheet Composite Anode for High-Performance Potassium-Ion Batteries

机译:铋 - 锑合金纳米粒子@多孔碳纳米片复合阳极用于高性能钾离子电池

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摘要

Antimony (Sb)-based anode materials have recently aroused great attention in potassium-ion batteries (KIBs), because of their high theoretical capacities and suitable potassium inserting potentials. Nevertheless, because of large volumetric expansion and severe pulverization during potassiation/depotassiation, the performance of Sb-based anode materials is poor in KIBs. Herein, a composite nanosheet with bismuth-antimony alloy nanoparticles embedded in a porous carbon matrix (BiSb@C) is fabricated by a facile freeze-drying and pyrolysis method. The introduction of carbon and bismuth effectively suppress the stress/strain originated from the volume change during charge/discharge process. Excellent electrochemical performance is achieved as a KIB anode, which delivers a high reversible capacity of 320 mA h g(-1) after 600 cycles at 500 mA g(-1). In addition, full KIBs by coupling with Prussian Blue cathode deliver a high capacity of 396 mA h g(-1) and maintain 360 mA h g(-1) after 70 cycles. Importantly, the operando X-ray diffraction investigation reveals a reversible potassiation/depotassiation reaction mechanism of (Bi,Sb) <-> K(Bi,Sb) <-> K-3(Bi,Sb) for the BiSb@C composite. Our findings not only propose a reasonable design of high-performance alloy-based anodes in KIBs but also promote the practical use of KIBs in large-scale energy storage.
机译:基于锑(SB)的阳极材料最近引起了钾离子电池(KIBS)的极大关注,因为它们的理论能力和合适的钾插入电位。然而,由于钾/沉积物期间的体积膨胀和严重粉碎,基于SB的阳极材料的性能在KIB上差。这里,通过容易冷冻干燥和热解法制造嵌入多孔碳基质(BISB @ C)中的复合纳米晶片,其嵌入多孔碳基质(BISB @ C)制造。碳和铋的引入有效地抑制了在充电/放电过程中起源于体积变化的应力/应变。优异的电化学性能作为Kib阳极实现,在500mA g(-1)的600次循环后,在600次循环之后,在620mA h g(-1)的高可逆容量中达到了高可逆容量。此外,通过与普鲁士蓝色阴极耦合的全部kibs提供高容量的396mA H g(-1),并在70次循环后维持360mA H g(-1)。重要的是,Operando X射线衍射研究揭示了BISB @ C复合材料(Bi,Sb)< - > K-3(Bi,Sb)的可逆钾/磷酸盐反应机理。我们的调查结果不仅提出了KIBS中高性能合金的阳极的合理设计,而且促进了大规模储能的KIB实际使用。

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