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WS2 Nano-petals and Nano-bristles Supported on Carbon Nanotubes for Electron Emission Applications

机译:碳纳米管上支持的WS2纳米花瓣和纳米刷毛用于电子发射应用

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摘要

Atomically thin WS2 nano-petals and nano-bristles were synthesized on vertically aligned carbon nanotubes (CNT) via magnetron sputtering at room temperature. The formation of the nano-petal morphology requires reaching a critical threshold in sputter deposition time, below which an amorphous film of WO3 is obtained instead. Increasing the deposition time past a second threshold results in a change to the nano-bristle morphology. Both WS2 nano-petals and nano-bristles were able to significantly enhance the electron emission of properties. The lowest turn-on voltage measured was to be 295 V and 355 V for the nano-petals and nano-bristles respectively, versus 425 V for pristine CNTs. The variation in the turn-on voltage is due to the electrical contacts at the interface between the different WS2 structures, which induces current saturation at high emission currents. These results demonstrate that 2D WS2 layers can be synthesized without the need for chemical routes and high growth temperatures if an appropriate template is employed.
机译:在室温下通过磁控溅射在垂直排列的碳纳米管(CNT)上合成了原子薄的WS2纳米花瓣和纳米刷毛。纳米花瓣形态的形成需要在溅射沉积时间中达到临界阈值,在该阈值以下可获得WO 3的非晶膜。将沉积时间增加到第二阈值以上会导致纳米刷毛形态的变化。 WS2纳米花瓣和纳米刷毛都能够显着增强电子发射性能。纳米花瓣和纳米鬃毛的最低测量导通电压分别为295 V和355 V,而原始CNT的最低导通电压为425V。导通电压的变化归因于不同WS2结构之间的界面处的电接触,这会在高发射电流时引起电流饱和。这些结果表明,如果使用合适的模板,则无需化学路线和高生长温度即可合成2D WS2层。

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