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PROCESS CONTROL OF CARBON NANOTUBE FORMATION USING RF GLOW-DISCHARGE PLASMA IN STRONG MAGNETIC FIELD

机译:强磁场中RF辉光 - 放电等离子体的碳纳米管形成过程控制

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The formation of uniform and well-aligned multi-walled carbon nanotubes (MWNTs) is investigated by controlling radio-frequency (rf) glow-discharge plasmas in strong magnetic field. When the magnetic field is weak (0.03 T), the MWNTs growing directly on the rf electrode are deformed by the bombardment of the high energy ions generated by the large sheath electric field in front of the rf electrode. When the strong magnetic field (2 T) is applied, on the other hand, the MWNTs are observed to be well-aligned and not to be deformed. These results can be explained by the fact that the ion bombardment energy reduces in spite of the existence of the large sheath electric field, which is caused by the magnetization of the ions in the strong magnetic field.
机译:通过控制强磁场中的射频(RF)辉光放电等离子体来研究均匀和对准的多壁碳纳米管(MWNT)的形成。当磁场较弱(0.03t)时,直接在RF电极上生长的MWNT通过RF电极前面的大护套电场产生的高能离子的轰击而变形。另一方面,当施加强磁场(2T)时,观察到MWNT以良好对齐并且不变形。这些结果可以通过离子轰击能量尽管存在大护套电场来解释,这是由强磁场中离子的磁化引起的。

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