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Aligned Carbon Nanotubes Catalytically Grown On Iron-based Nanoparticles Obtained By Laser-induced Cvd

机译:激光诱导Cvd获得的铁基纳米颗粒上催化生长的碳纳米管

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摘要

Iron-based nanoparticles are prepared by a laser-induced chemical vapor deposition (CVD) process. They are characterized as body-centered Fe and Fe_2O_3 (maghemite/magnetite) particles with sizes ≤5 and 10 nm, respectively. The Fe particles are embedded in a protective carbon matrix. Both kind of particles are dispersed by spin-coating on SiO_2/Si(1 0 0) flat substrates. They are used as catalyst to grow carbon nanotubes by a plasma- and filaments-assisted catalytic CVD process (PE-HF-CCVD). Vertically oriented and thin carbon nanotubes (CNTs) were grown with few differences between the two samples, except the diameter in relation to the initial size of the iron particles, and the density. The electron field emission of these samples exhibit quite interesting behavior with a low turn-on voltage at around 1 V/μm.
机译:铁基纳米颗粒是通过激光诱导化学气相沉积(CVD)工艺制备的。它们的特征是分别以小于5和10 nm的尺寸为主体的Fe和Fe_2O_3(磁铁矿/磁铁矿)颗粒为特征。 Fe颗粒被嵌入保护性碳基质中。通过旋涂将两种颗粒分散在SiO_2 / Si(1 0 0)平面基板上。它们被用作通过等离子体和细丝辅助催化CVD工艺(PE-HF-CCVD)生长碳纳米管的催化剂。垂直取向的薄碳纳米管(CNT)的生长在两个样品之间几乎没有差异,除了直径相对于铁颗粒的初始尺寸和密度。这些样品的电子场发射在1 V /μm左右的低开启电压下表现出非常有趣的行为。

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