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磁黄铁矿在纳米碳管生长中的作用
引用本文:杨翔,陈代璋.磁黄铁矿在纳米碳管生长中的作用[J].矿物岩石,1999,19(2):5-7.
作者姓名:杨翔  陈代璋
作者单位:中国地质大学材料科学系,中国地质大学地质矿产系
基金项目:国家自然科学基金,国土资源部矿物岩石材料国家实验室开放基金
摘    要:本文采用天然磁黄铁矿矿物-六方磁黄铁矿和单斜磁黄铁矿分别作催化剂,引入电弧法生长纳米碳管,发现二者具有截然不同的催化效果。在此基础上,探讨了在合成纳米碳管实验中磁黄铁矿的催化作用及催化机理。

关 键 词:电弧放电法  纳米碳管  矿物催化剂  磁黄铁矿

PYRRHOTITE CATALYZED GROWTH OF CARBON NANOTUBES
Yang Xiang,Chen Daizhang,Gu Chenbin,Lu Xiaoying,Yu Ying,Guo Ying.PYRRHOTITE CATALYZED GROWTH OF CARBON NANOTUBES[J].Journal of Mineralogy and Petrology,1999,19(2):5-7.
Authors:Yang Xiang  Chen Daizhang  Gu Chenbin  Lu Xiaoying  Yu Ying  Guo Ying
Abstract:Arc method is used to study the growth of carbon nanotubes.Both clinopyrrhotite and hexagonalpyrrhotite are selected as catalysts in the experiments.Great difference of catalytic results exists between the two kinds of pyrrhotite catalysts. When hexagonalpyrrhotite was used as catalyst, the production of nanotubes decreased.When clinopyrrhotite was used as catalyst,not only the production of nanotubes increased, but also the shape and length of nanotubes changed.The analysis on the structure of the two kinds of pyrrhotite leads to the recognition that there are more vacancy and structural defects within and on the surface of clinopyrrhotite than those of hexagonalpyrrhotite.As a result,the clinopyrrhotite is more active and the catalyst of pyrrhotite is more efficient.
Keywords:arc method  carbon nanotubes  mineral catalysts  pyrrhotite  catalytic mechanism
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