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Graphene-Encapsulated CuP2: A Promising Anode Material with High Reversible Capacity and Superior Rate-Performance for Sodium-Ion Batteries

机译:石墨烯封装的杯子2:具有高可逆容量和钠离子电池的高速率性能的有前途的阳极材料

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摘要

Metal polyphosphides are regarded as the ideal anode candidates for sodium storage because of their high theoretical capacity, reasonable potential, and abundant resource alternative. However, most of them suffer from irreversibility problems, as reflected by their low reversible capacity, inferior Coulombic efficiency (CE), low rate capability, and poor cycling stability. In this work, we systematically compare the electrochemical behavior of a variety of polyphosphides bulks, discovering that the CuP2 bulks have higher initial reversible capacity (416 mAh g(-1) at 0.1 A g(-1)) and CE (74%) compared to the FeP2, CoP3, and NiP2 bulks, which is related to the unique crystal structure of CuP2. The CuP2 electrode is optimized by the rational design of encapsulating CuP2 nanoparticles into three-dimensional graphene networks (CuP2@GNs), leading to excellent electrochemical performance. In the carbonate electrolyte, the CuP2@GNs electrode can deliver the reversible capacities of up to 804, 736, 685, 621, and 508 mAh g(-1) at 0.1, 0.5, 1, 2, and 5 A g(-1), respectively, along with a first CE of 66%. The reversible capacity can be up to 737 mAh g(-1) at 0.1 A g(-1) with a first CE of 83% in the ether electrolyte. These excellent performance demonstrates that CuP2@GNs could be a promising anode material for sodium-ion batteries.
机译:金属polyphosphides被视为理想的阳极候选者,因为它们的高理论容量,合理的潜力,丰富的资源替代存储钠。然而,他们大多遭受不可逆转的问题,通过其低可逆容量,不如库仑效率(CE),低速率能力,循环稳定性差反映。在这项工作中,我们系统地比较多种polyphosphides散货的电化学行为,发现该CUP2散货具有更高的初始可逆容量(在0.1 A克416毫安克(-1)(-1))和CE(74%)相比的FeP2,的CoP3,和NiP2散货,这是关系到CUP2的独特晶体结构。所述CUP2电极通过封装CUP2纳米颗粒的合理设计优化成三维石墨烯网络(CUP2 @ GNS),从而导致优异的电化学性能。在碳酸盐电解质,所述CUP2 @ GNS电极可提供高达的可逆容量至804,736,685,621,和508毫安克(-1)在0.1,0.5,1,2,和5A克(-1 ),分别,连同66%的第一CE。可逆容量可以达到737毫安克(-1)在0.1 A克(-1)的83%,在醚电解质的第一CE。这些优异的性能表明,CUP2 @ GNS可能是钠离子电池有前途的阳极材料。

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