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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Enhanced field emission properties of films consisting of Fe-core carbon nanotubes prepared under magnetic field
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Enhanced field emission properties of films consisting of Fe-core carbon nanotubes prepared under magnetic field

机译:磁场作用下由铁芯碳纳米管组成的薄膜的增强的场发射特性

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摘要

Films consisting of carbon nanotubes containing iron (CNTs-Fe) were prepared on tungsten substrates for electron field emission. The films were prepared by drying the mixture of the CNTs-Fe with poly [3-octyl-thiophene] (P3OT) or toluene under a magnetic field using a permanent magnet of surface magnetic flux 340 mT. The field emission properties of the films were measured in comparison with the films prepared without the magnetic field. The films prepared under the magnetic field showed better field emission characteristics than those without the magnetic field, and the electric field to generate the required field emission current was significantly decreased by applying the magnetic field in the film preparation process. Microscopic analyses indicated that the magnetic field had the effect of forcing the CNTs-Fe to stand perpendicular to the substrate, which causes the enhanced field emission properties.
机译:在钨基板上制备由含铁的碳纳米管(CNTs-Fe)组成的薄膜,用于电子场发射。通过使用表面磁通量为340 mT的永磁体在磁场下干燥CNTs-Fe与聚[3-辛基噻吩](P3OT)或甲苯的混合物来制备薄膜。与没有磁场制备的薄膜相比,测量了薄膜的场发射性能。在磁场下制备的膜显示出比没有磁场的膜更好的场发射特性,并且通过在膜制备过程中施加磁场,显着降低了产生所需场发射电流的电场。微观分析表明,磁场具有迫使CNTs-Fe垂直于基底站立的作用,从而增强了场发射性能。

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