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A Facile Route to Metal Oxides/Single-Walled Carbon Nanotube Macrofilm Nanocomposites for Energy Storage

机译:金属氧化物/单壁碳纳米管大分子膜纳米复合材料储能的便捷途径

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Nanocomposites consisting of transition-metal oxides and carbon nanomaterials with a desired size and structure are highly demanded for high performance energy storage devices. Here, a facile two-step and cost-efficient approach relying on directly thermal treatment of chemical-vapor-deposition products is developed as a general synthetic method to prepare a family of metal oxides (MxOy (M=Fe, Co, Ni))/single-walled carbon nanotube (SWNT) macrofilm nanocomposites. The MxOy nanoparticles obtained are of 3-17 nm in diameter and homogeneously anchor on the free-standing SWNT macrofilms. NiO/SWNT also exhibits a high specific capacitance of 400 F g-1 and fast charge-transfer Faradaic redox reactions to achieve asymmetric supercapacitors with a high power and energy density. All MxOy/SWNT nanocomposites could deliver a high capacity beyond 1000 mAh g-1 and show excellent cycling stability for lithium-ion batteries. The impressive results demonstrate the promise for energy storage devices and the general approach may pave the way to synthesize other functional nanocomposites.
机译:高性能储能装置非常需要由过渡金属氧化物和具有所需尺寸和结构的碳纳米材料组成的纳米复合材料。在这里,开发了一种依靠两步法且经济高效的方法,该方法依赖于化学气相沉积产品的直接热处理,作为制备一系列金属氧化物(MxOy(M = Fe,Co,Ni)的常规合成方法) /单壁碳纳米管(SWNT)宏观薄膜纳米复合材料。获得的MxOy纳米颗粒的直径为3-17 nm,均匀地锚固在独立的SWNT大膜上。 NiO / SWNT还具有400 F g-1的高比电容和快速的电荷转移法拉第氧化还原反应,可实现具有高功率和能量密度的不对称超级电容器。所有MxOy / SWNT纳米复合材料均可提供超过1000 mAh g-1的高容量,并显示出出色的锂离子电池循环稳定性。令人印象深刻的结果证明了储能设备的前景,通用方法可能为合成其他功能纳米复合材料铺平道路。

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