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Synthesis of free-standing carbon nanotube electrodes using plasma-enhanced chemical vapor deposition

机译:利用等离子体增强化学气相沉积法合成自立式碳纳米管电极

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In this presentation, the synthesis of multi-walled carbon nanotubes (MWCNTs) has been investigated to fabricate the nano-electrodes. MWCNTs were grown on a TiN coated quartz plate with Fe catalysts patterned by UV nano-imprint lithography (NIL)1. The proposed study is the realization of a simple, inexpensive and reproducible method to produce nanoscale electrode arrays in large areas. The patterns were defined by an array of circles 200 nm in diameter, and 500 nm in pitch. The nano-patterned master and Fe catalyst are observed with good pattern fidelity over a large area by atomic force microscope (AFM) and scanning electron microscopy (SEM). Among various synthesis methods for carbon nanotube growth, plasma-enhanced chemical vapor deposition (PECVD)2 was used for the growth of vertically aligned multi-wall carbon nanotube arrays. Ammonia (NH3) and acetylene (C2H2) were used as the etchant gases and the carbon source, respectively. The carbon nanotubes were vertically aligned in high density on a large area of the plain quartz substrates. High-resolution transmission electron microscopy (TEM) analysis reveals that the synthesized CNTs have multi-walls and bamboo-like structures. Patterned catalysts made it possible to allow the precise placement of individual CNT electrodes on the substrate. These electrodes have diameters ranging from 50 nm to 100 nm and lengths of about 300 nm. A field emission test using isolated CNTs on quartz plates showed the ability of CNTs as nano-electrodes. Bio compatibility was also investigated by cell culturing on the fabricated CNTs/quartz template for potential bio-applications.
机译:在此介绍中,已研究了多壁碳纳米管(MWCNT)的合成以制造纳米电极。 MWCNT在具有Ti涂层的石英板上生长,石英板上具有通过UV纳米压印光刻(NIL)1图案化的Fe催化剂。拟议的研究是实现一种简单,廉价且可重现的方法,以大面积生产纳米级电极阵列。图案由直径为200 nm,间距为500 nm的圆形阵列定义。通过原子力显微镜(AFM)和扫描电子显微镜(SEM)在大面积上观察到具有良好图案保真度的纳米图案的母版和铁催化剂。在用于碳纳米管生长的各种合成方法中,等离子体增强化学气相沉积(PECVD)2用于垂直排列的多壁碳纳米管阵列的生长。氨气(NH3)和乙炔(C2H2)分别用作蚀刻气体和碳源。碳纳米管在大面积的普通石英基板上以高密度垂直排列。高分辨率透射电子显微镜(TEM)分析表明,合成的碳纳米管具有多壁结构和类似竹子的结构。图案化的催化剂可以将各个CNT电极精确地放置在基材上。这些电极的直径为50nm至100nm,长度为约300nm。在石英板上使用隔离的CNT进行的场发射测试显示了CNT作为纳米电极的能力。还通过在制备的CNT /石英模板上进行细胞培养来研究生物相容性,以进行潜在的生物应用。

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