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首页> 外文期刊>Diamond and Related Materials >Con-elation between electron field emission property and in situ plasma spectroscopy for carbon nanotubes synthesized by using MPECVD method
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Con-elation between electron field emission property and in situ plasma spectroscopy for carbon nanotubes synthesized by using MPECVD method

机译:通过MPECVD方法对电子场发射性能和原位等离子体光谱法进行碳纳米管

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摘要

Carbon nanotubes (CNTs) were grown on Fe needle by a modified microwave plasma enhanced chemical vapor deposition (MPECVD) process, in which the plasma was induced in the vicinity of the tip of Fe needle through the interaction of microwave and Fe needles. The spectra of plasma were in situ examined, indicating that Ar/CH_4 ratio and total pressure remarkably affect the characteristics of the plasma spectra, which, in turn, correlated intimatedly with the electron field emission properties of CNTs. The presence of singly ionized carbons (C_(II)) in the plasma is presumed to be the main factor facilitating the growth of CNTs, possessing good electron field emission properties. The maximum electron field emission current density is 8 mA/cm~2 for carbon nanotubes grown at 10 percent CH_4 and 300 Torr total pressure. The corresponding turn-on field (E_o) is 20 V/um. Restated, the electron field emission properties of CNTs can be optimized by controlling the spectral characteristics of plasma.
机译:通过修饰的微波等离子体增强的化学气相沉积(MPECVD)工艺在Fe针上生长碳纳米管(CNT),其中通过微波和Fe针的相互作用在Fe针尖端附近诱导等离子体。等离子体的光谱原位检查,表明AR / CH_4比率和总压力显着影响等离子体光谱的特性,又与CNT的电子场发射性能齐节地相关。血浆中单电离碳(C_(II))的存在被认为是促进CNT生长的主要因素,具有良好的电子场排放特性。用于10%CH_4和300托管总压力的碳纳米管的最大电子场发射电流密度为8mA / cm〜2。相应的开启字段(E_O)为20 V / UM。 Restated,CNT的电子场发射性能通过控制等离子体的光谱特性来优化。

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