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SnO2 nanoparticles anchored on carbon foam as a freestanding anode for high performance potassium-ion batteries

机译:SnO2纳米粒子在碳泡沫上锚定,作为高性能钾离子电池的独立阳极

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摘要

Potassium-ion batteries (PIBs) are considered as potential replacements to lithium-ion batteries for large scale energy storage applications due to abundant potassium resources and low cost. However, it is a rough road to find suitable materials with high capacity and cycling stability due to the large K ion radius. In this study, a simple method, electrodeposition, is used to anchor SnO2 nanoparticles on three dimensional carbon foam (SnO2@CF) as a freestanding anode for PIBs. The prepared freestanding SnO2@CF electrode features a three dimensional (3D) conductive carbon frame and SnO2 nanoparticles, which can enhance electron transfer, prevent SnO2 from losing electrical contact after large volume changes and facilitate electrolyte infiltration and K ion transfer. As expected, SnO2@CF delivers a high K storage specific capacity, and outstanding cycling stability (231.7 mA h g(-1) after 400 cycles at 1 A g(-1)) and rate performance (371.4, 307.6, 247.3 and 143.5 mA h g(-1) at 0.5, 1, 2 and 5 A g(-1), respectively). Meanwhile, the phase transition of the SnO2@CF electrode is tracked during the charge and discharge processes in PIBs. This study provides a facile method to prepare freestanding electrode materials and a promising anode material for PIBs.
机译:钾离子电池(PIB)由于丰富的钾资源和低成本而被认为是大规模储能应用的锂离子电池的潜在替代品。然而,由于大于K离子半径,它是一种粗略的道路,可以找到具有高容量和循环稳定性的合适材料。在该研究中,一种简单的方法,电沉积,用于将SnO2纳米颗粒锚定在三维碳泡沫(SnO2 @ CF)上作为PIB的独立阳极。制定的独立式SnO2 @ CF电极具有三维(3D)导电碳框架和SnO2纳米颗粒,其可以增强电子转移,防止SnO2在大体积变化后失去电接触,促进电解质浸润和K离子转移。正如预期的那样,SnO2 @ CF在1A(-1))和速率性能下提供高k储存特定容量,并出色的循环稳定性(231.7 mA hg(-1),速率(371.4,307.6,247.3和143.5 mA Hg(-1)分别在0.5,1,2和5a g(-1)时)。同时,在PIB的充电和放电过程中跟踪SnO2 @ CF电极的相位转变。本研究提供了一种适用于准备独立电极材料和用于PIB的阳极材料的容易方法。

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