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Highly efficient field emission properties of radially aligned carbon nanotubes

机译:径向对准碳纳米管的高效场排放性能

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Here, we report extraordinary field emission properties from one pot synthesized aligned carbon nanotubes endowed with related Fe nanoparticles (NPs). The CNT configuration is in the form of a carbon hollow cylinder (CHC) with CNTs radially aligned towards the CHC axis. The structure generates electron field emission properties such as an ultralow turn on field (0.35 V m(-1) at 10 A cm(-2)), a low threshold field (0.41 V m(-1) at 100 A cm(-2)) and a high field emission current density (7.71 mA cm(-2) at 0.78 V m(-1)). It also exhibits multi-fold improvement in the field enhancement factor (1.34 x 10(4)) with highly stable current emission at 100 A measured for 14 h. No post synthesis treatment is required for enhanced field emission characteristics. The growth related Fe NPs assist in lowering the work function and hence enhancing the field emission properties. The possibility of assembling nano-structured field emitters into macroscale architectures suggests new prospects for next generation three dimensional electron sources.
机译:在这里,我们报告了具有赋予相关Fe纳米颗粒(NPS)的一个罐合成的对准的碳纳米管的非凡的场排放性能。 CNT配置是碳中空圆柱体(CHC)的形式,其中CNT朝向CHC轴线径向对齐。该结构产生电子场发射特性,例如超级开启场(0.35V m(-1),在10厘米(-2)),低阈值场(0.41 V m(-1)在100 a cm( - 2))和高场发射电流密度(7.71mA cm(-2),0.78 V m(-1))。它还表现出现场增强因子(1.34×10(4))的多倍改善,在100 a中测量为14小时,高度稳定的电流发射。不需要合成后处理,以增强现场排放特性。增长相关FE NPS有助于降低工作功能,从而增强现场排放特性。将纳米结构磁场发射器组装到宏观架构中的可能性表明下一代三维电子来源的新前景。

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