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Fe-filled carbon nanotube array with high coercivity

机译:高矫顽力的铁填充碳纳米管阵列

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Fe-filled carbon nanotube (CNT) array was fabricated using an excessive-catalyst injection chemical deposition method. SEM and TEM characterizations showed that the well-aligned CNTs were similar to 80 mu m in length, with outer diameter of 20-50 nm and inner diameter of 10-20 nm. The inner cavity of the CNT was filled with Fe nanowires quasi-continuously, which can be used for reference in synthesis of in situ one-dimensional nanocomposite. Magnetic properties measurements revealed that the array exhibited high coercivity of 732 Oe, higher than that of bulk iron (0.9 Oe) and Fe-filled CNTs of most previous references. And the effect of the macroscopic length of the CNTs on the magnetic properties of the array is preliminarily studied. The high coercivity and the structure of single-domain Fe nanowires isolated by antiferromagnetic CNTs make it a promising candidate for high-density magnetic recording media. (c) 2006 Elsevier B.V. All rights reserved.
机译:使用过量催化剂注入化学沉积方法制造了填充铁的碳纳米管(CNT)阵列。 SEM和TEM表征表明,排列良好的CNT的长度类似于80μm,外径为20-50nm,内径为10-20nm。碳纳米管的内腔被准连续地填充有铁纳米线,可用于原位一维纳米复合材料的合成。磁性能测量表明,该阵列表现出732 Oe的高矫顽力,高于大多数先前参考文献的散装铁(0.9 Oe)和填充Fe的CNT。并初步研究了碳纳米管的宏观长度对阵列磁性能的影响。高矫顽力和反铁磁CNT隔离的单畴Fe纳米线的结构使其成为高密度磁记录介质的有希望的候选者。 (c)2006 Elsevier B.V.保留所有权利。

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