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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >N-doped hollow carbon nanofibers anchored hierarchical FeP nanosheets as high-performance anode for potassium-ion batteries
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N-doped hollow carbon nanofibers anchored hierarchical FeP nanosheets as high-performance anode for potassium-ion batteries

机译:N掺杂的中空碳纳米纤维锚定分层FEP纳米片作为钾离子电池的高性能阳极

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Potassium-ion batteries (PIBs) are emerging as appealing technologies for energy storage applications due to the highly abundant potassium resource in nature and low cost of potassium. Iron phosphide (FeP) have been widely investigated as anode materials for PIBs, owing to its high theoretical specific capacity and the plentiful of its primitive materials (P and Fe). However, the practical application of FeP materials in PIBs suffers from serious capacity fading due to the large volume expansion caused by the intercalation/deintercalation of potassium ions. Here, hierarchical FeP nanosheets internally wired by N-doped hollow carbon nanofibers (N-CNF@FeP) is rationally designed and synthesized via a combination of hydrothermal route and phosphidation treatment. In such a unique nanoarchitecture, hierarchical FeP nanosheets are homogeneously anchored on the hollow carbon nanofibers with nitrogen-rich and porous properties. This unique designed structure not only improve the electronic conductivity and structural stability of the hybrid composite but also facilitates the transport of electrons and K-ions. When applied as potassium ion battery, N-CNF@FeP composite manifests remarkably reversible capacities, ultra-long cycle life, as well as superior rate performances for potassium storage process. Moreover, at a current density of 0.1 A g(-1), N-CNF@FeP composite delivers a high capacity of 210 mAh g(-1) after 1000 cycles. (C) 2019 Elsevier B.V. All rights reserved.
机译:钾离子电池(PIB)由于高度丰富的钾资源和钾的低成本而导致储能应用的吸引力技术。由于其高理论特异性容量和其原始材料(P和Fe)的高理论特异性容量和丰富的阳极材料,磷化铁(FEP)被广泛研究了PIB的阳极材料。然而,由于钾离子的嵌入/脱嵌的大容量膨胀,PIB材料中FEP材料的实际应用缺乏严重的容量衰落。这里,通过N掺杂的中空碳纳米纤维(N-CNF @ FEP)内部连接的分层FEP纳米片是通过水热途径和磷酸化处理的组合合理设计和合成。在这种独特的纳米建筑中,分层FEP纳米型均匀地固定在中空碳纳米纤维上,具有富含氮和多孔的特性。这种独特的设计结构不仅提高了混合复合材料的电子电导率和结构稳定性,而且还有利于电子和k离子的运输。当作为钾离子电池应用时,N-CNF @ FEP复合材料表现出显着的可逆容量,超长循环寿命,以及钾储存过程的优越速率性能。此外,在电流密度为0.1Ag(-1),在1000个循环之后,N-CNF @ FEP复合物在1000次循环之后提供高容量的210mAhg(-1)。 (c)2019 Elsevier B.v.保留所有权利。

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