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首页> 外文期刊>Nanotechnology >LiFePO4 nanoparticles enveloped in freestanding sandwich-like graphitized carbon sheets as enhanced remarkable lithium-ion battery cathode
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LiFePO4 nanoparticles enveloped in freestanding sandwich-like graphitized carbon sheets as enhanced remarkable lithium-ion battery cathode

机译:LiFePO4纳米颗粒包裹在独立的三明治状石墨化碳片中,作为增强的出色锂离子电池阴极

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摘要

A novel nanostructure where LiFePO4 nanoparticles are enveloped in sandwich-like carbon sheets as an enhanced cathode in lithium-ion batteries has successfully been synthesized for the first time. Compared to previous carbon-based nanocomposites, the achieved sandwich-like LiFePO4 nanocomposites exhibit totally different architecture, in which LiFePO4 nanoparticles are tightly entrapped between two carbon layers, instead of being anchored on the carbon sheet surfaces. In other words, the achieved sandwich-like LiFePO4 nanocomposite carbon layers are actually freestanding and can be operated and separated from each other. This is a great breakthrough in the design and synthesis of carbon-based functional materials. The obtained sandwich-like LiFePO4 nanocomposites present excellent electrochemical performance, which is rationally ascribed to the superb and unique structure and architecture. Of particular note is that the freestanding sandwich-like LiFePO4 nanocomposites exhibit enhanced cyclability and rate capability. At a high current density of 0.1 A g(-1), a stable specific capacity of approximately 168.5 mAh g(-1) can be delivered over 1000 cycles, and when the charge-discharge rates increase to 0.6, 2, 5 and 10 A g(-1), the specific capacities still survive at 149, 129, 114 and 91 mAh g(-1), respectively. Meanwhile, the sandwiched nanocomposite demonstrates a significantly improved low-temperature electrochemical energy storage performance. With respect to the excellent Li storage performance, and facility and reliability of production, the freestanding sandwich-like LiFePO4 nanocomposites are reasonably believed to have a great potential for multiple electrochemical energy storage applications.
机译:首次成功合成了一种新的纳米结构,其中LiFePO4纳米颗粒被包裹在三明治状碳片中,作为锂离子电池中的增强阴极。与以前的碳基纳米复合材料相比,所获得的三明治状LiFePO4纳米复合材料展现出完全不同的结构,其中LiFePO4纳米颗粒紧密地包裹在两个碳层之间,而不是锚定在碳片表面上。换句话说,所获得的夹心状LiFePO 4纳米复合碳层实际上是独立的,并且可以彼此操作和分离。这是碳基功能材料设计和合成的重大突破。所获得的夹心状LiFePO4纳米复合材料具有出色的电化学性能,这可以合理地归因于其卓越而独特的结构和体系结构。特别值得注意的是,独立的三明治状LiFePO4纳米复合材料表现出增强的循环能力和速率能力。在0.1 A g(-1)的高电流密度下,可以在1000次循环中以及充放电速率增加到0.6、2、5和10时提供大约168.5 mAh g(-1)的稳定比容量。一个g(-1),比容量仍分别在149、129、114和91 mAh g(-1)下存活。同时,夹层纳米复合材料表现出显着改善的低温电化学能量存储性能。关于优异的锂存储性能,设施和生产可靠性,可以合理地认为,独立的三明治状LiFePO4纳米复合材料在多种电化学储能应用中具有巨大潜力。

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