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Field emission from carbon nanotube bundle arrays grown on self-aligned ZnO nanorods

机译:自对准ZnO纳米棒上生长的碳纳米管束阵列的场发射

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The field emission (FE) properties of carbon nanotube (CNT) bundle arrays grown on vertically self-aligned ZnO nanorods (ZNRs) are reported. The ZNRs were first synthesized on ZnO-seed-coated Si substrate by the vapour phase transport method, and then the radically grown CNTs were grown directly on the surface of the ZNRs from ethanol flames. The CNT/ZNR composite showed a turn-on field of 1.5 V mu m(-1) (at 0.1 mu A cm(-2)), a threshold field of 4.5 V mu m(-1) (at 1 mA cm(-2)) and a stable emission current with fluctuations of 5%, demonstrating significantly enhanced FE of ZNRs due to the low work function and high aspect ratio of the CNTs, and large surface-to-volume ratio of the underlying ZNRs.
机译:报告了在垂直自对准的ZnO纳米棒(ZNRs)上生长的碳纳米管(CNT)束阵列的场发射(FE)特性。首先通过气相传输法在ZnO种子涂层的Si衬底上合成ZNR,然后通过乙醇火焰在ZNRs的表面上直接生长自由基生长的CNT。 CNT / ZNR复合材料的开启电场为1.5 Vμm(-1)(在0.1 mu A cm(-2)时),阈值电场为4.5 Vμm(-1)(在1 mA cm( -2))和稳定的发射电流(波动幅度为5%),这表明由于CNT的低功函和高纵横比以及下方ZNR的较大的表面体积比,ZNR的FE显着提高。

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