化学气相沉积法制备铁化合物/碳纳米管磁性复合材料

T. Saraswati, Oktaviana Dewi Indah Prasiwi, A. Masykur, M. Anwar
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引用次数: 1

摘要

利用二氧化碳/碳催化剂在不同压力下成功地进行了化学气相沉积(CVD)合成磁性碳纳米管(mCNT)。温度设定为800℃,反应时间为10分钟。先入20torr氮气(N2),再入乙醇蒸气,最终压力分别达到80torr和100torr,加气后达到180torr。石墨的x射线衍射峰从26.53°移动到25.53°,证实了mCNT的形成,这与其他具有sp2杂化碳原子杂化结构的碳同素异形体高度相关。高压加上大气的加入导致了过度氧化,影响了mCNT的生长。透射电子显微镜(TEM)观察到催化剂颗粒填充的mCNT,表明其磁性是由磁相引起的。在不加空气的较低压力条件下生产的mCNT具有最佳的导电性能(电阻较低)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SYNTHESIS OF MAGNETIC COMPOSITE OF IRON COMPOUNDS/CARBON NANOTUBES IN CHEMICAL VAPOR DEPOSITION
The chemical vapor deposition (CVD) synthesis of magnetic carbon nanotubes (mCNT) using carbon dioxide/carbon catalyst has been successfully carried out in various pressures. The temperatures were set at 800° C for 10 minutes reaction time. Nitrogen (N2) gas in 20 Torr was flown in followed by ethanol vapor until the final pressure reached 80 and 100 Torr without added air, and 180 Torr with added air. The formation of mCNT was confirmed by shifted X-ray diffraction (XRD) peak of graphite from 26.53° to 25.53° which were highly considered to the other carbon allotropes with sp2 hybridized carbon atom hybridization structures. The higher pressure with added atmospheric air led to the excessive oxidation which influenced the growth of mCNT. Transmission electron microscopy (TEM) analysis observed mCNT filled by catalyst particles which suggested as magnetic phase induced the magnetic property of mCNT. The best electrical conductivity performance (lower electrical resistance) was owned by mCNT produced in the lower pressure condition with no air added.
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