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Field emission characteristics study for ZnO-CNTs composites by the microwave plasma jet chemical vapor deposition system

机译:微波等离子体化学气相沉积系统研究ZnO-CNTs复合材料的场发射特性

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The field emission (FE) properties of the carbon nanotubes (CNTs) grown on zinc oxide (ZnO) films have been reported in the present study. The ZnO films were first spun on a Si substrate by a spin coater, and then the grown CNTs were grown on the surface of the ZnO films by the microwave plasma jet chemical vapor deposition (MPJCVD) system. The experimental results showed that ZnO-CNT composite exhibited superior FE performance compared to that of CNTs and ZnO nanowires. The turn-on field of an emission device constructed with the ZnO-CNT composite was 0.31 Vμm~(-1) which was lower than that of the common CNTs and ZnO nanowiresanorods. As the results of field emission tests, the CNTs on ZnO films could be a useful material in the emission applications.
机译:在本研究中已经报道了在氧化锌(ZnO)薄膜上生长的碳纳米管(CNT)的场发射(FE)特性。首先通过旋涂机将ZnO膜旋涂在Si基板上,然后通过微波等离子体喷射化学气相沉积(MPJCVD)系统在ZnO膜的表面上生长生长的CNT。实验结果表明,与CNTs和ZnO纳米线相比,ZnO-CNT复合材料表现出优异的有限元性能。 ZnO-CNT复合材料构成的发射器件的导通场为0.31Vμm〜(-1),低于普通的CNT和ZnO纳米线/纳米棒。作为场发射测试的结果,ZnO薄膜上的CNT在发射应用中可能是有用的材料。

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