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首页> 外文期刊>ACS nano >Electrospun Sb/C fibers for a stable and fast sodium-ion battery anode
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Electrospun Sb/C fibers for a stable and fast sodium-ion battery anode

机译:静电纺Sb / C纤维,用于稳定且快速的钠离子电池阳极

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摘要

Sodium-ion batteries (SIBs) are considered a top alternative to lithium-ion batteries (LIBs) for large-scale renewable energy storage units due to their low cost and the abundance of sodium-bearing precursors in the earth's mineral deposits. However, the development of anode materials for SIBs to date has been mainly limited to carbonaceous materials with minimal research devoted to high capacity alloy-based materials. In this study, an antimony (Sb)/carbon (C) electrode with ~30 nm Sb nanoparticles (NPs) uniformly encapsulated in interconnecting one-dimensional (1D) 400 nm carbon fibers (denoted as SbNP@C) was fabricated using a simple and scalable electrospinning method. This binder-free, current collector-free SbNP@C electrode demonstrated high capacity and stable long-term cycling performance at various current densities. The SbNP@C _(electrode) showed an initial total capacity of 422 mAh/g _(electrode) and retained 350 mAh/gelectrode after 300 deep charge-discharge cycles under 100 mA/g_(Sb). Moreover, because of the efficient 1D sodium-ion transport pathway and the highly conductive network of SbNP@C, the electrode preserved high overall capacities even when cycled at high currents, extending its usability to high power applications.
机译:钠离子电池(SIB)被认为是锂离子电池(LIB)的最佳替代品,可用于大规模的可再生能源存储单元,因为它们的成本低廉,并且地球矿床中的含钠前体含量很高。然而,迄今为止,用于SIB的阳极材料的开发主要限于含碳材料,而对高容量合金基材料的研究很少。在这项研究中,使用简单的方法制造了具有〜30 nm Sb纳米颗粒(NPs)的锑(Sb)/碳(C)电极,该电极均匀地包裹在互连一维(1D)400 nm碳纤维(表示为SbNP @ C)中。和可扩展的静电纺丝方法。这种无粘结剂,无集流体的SbNP @ C电极在各种电流密度下均表现出高容量和稳定的长期循环性能。 SbNP @ C _(电极)的初始总容量为422 mAh / g _(电极),在100 mA / g_(Sb)下进行300次深层充放电后,保留了350 mAh / g电极。此外,由于高效的一维钠离子传输途径和SbNP @ C的高导电网络,即使在高电流循环时,该电极也能保持较高的总容量,从而将其可用性扩展到高功率应用。

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