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Hollow hematite nanosphere/carbon nanotube composite: Mass production and its high-rate lithium storage properties

机译:空心赤铁矿纳米球/碳纳米管复合材料:批量生产及其高速率锂存储性能

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摘要

Spray pyrolysis was used to produce hollow hematite (α-Fe _2O_3) nanosphere (HHNS)/carbon nanotube (CNT) composite on a large scale. The method offers simplicity, high productivity, versatility, low cost, and suitability for industry. The structure is composed of hollow nanospheres in a network of CNTs. The possible formation mechanism of hollow α-Fe_2O_3 nanospheres is due to the rapid evaporation of water and the super-hydrophobicity of the CNT surface. The electrochemical tests show that the HHNS/CNT composite is a promising lithium storage material in terms of high capacity (~700mAhg- 1), good high-rate capability, and good cycle life (up to 150 cycles). The materials improve both lithium ion and electron transport, which are limiting factors on the high-rate capability of lithium-ion batteries. The production method can be easily adapted to produce a wide range of hollow metal oxide nanosphere/CNT composites.
机译:喷雾热解用于大规模生产空心赤铁矿(α-Fe_2O_3)纳米球(HHNS)/碳纳米管(CNT)复合材料。该方法提供了简单性,高生产率,多功能性,低成本和工业适用性。该结构由碳纳米管网络中的空心纳米球组成。中空α-Fe_2O_3纳米球的可能形成机理是由于水的快速蒸发和CNT表面的超疏水性。电化学测试表明,HHNS / CNT复合材料具有高容量(〜700mAhg-1),良好的高倍率性能和良好的循环寿命(高达150次循环),是一种有前途的锂存储材料。这些材料改善了锂离子和电子传输,这是限制锂离子电池高倍率性能的因素。该生产方法可以容易地适于生产多种中空金属氧化物纳米球/ CNT复合材料。

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