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Field Emission And Cathodoluminescence Of Zns Hexagonal Pyramids Of Zinc Blende Structured Single Crystals

机译:锌共混结构单晶Zns六边形金字塔的场发射和阴极发光。

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Single-crystal hexagonal pyramids of zinc blende ZnS are fabricated by facile thermal evaporation in an ammonia atmosphere at 1150℃. It is found that ZnS pyramids grow along the [111] crystal axis and possess a sharp tip with a diameter of ~10nm and a micrometer-sized base. The structural model and growth mechanism are proposed based on crystallographic characteristics. This unique ZnS pyramid structure exhibits a low turn-on field (2.81 V μm~(-1)), a high field-enhancement factor (over 3000), a large field-emission current density (20 mA cm~(-2)), and good stability with very small fluctuation (0.9%). These superior field-emission properties are clearly attributed to the pyramid morphology, with micrometer-sized bases and nanotips, and high crystallinity. Moreover, a stable UV emission of 337 nm at room temperature is observed and can be ascribed to the band emission of the zinc blende phase. These results suggest that the ZnS hexagonal pyramids can be expected to find promising applications as field emitters and optoelectronic devices.
机译:通过在1150℃的氨气氛中进行热蒸发,可以制备锌共混物ZnS的单晶六棱锥。发现ZnS金字塔沿[111]晶轴生长,并具有直径约10nm的尖锐尖端和微米级的基底。根据晶体学特征,提出了结构模型和生长机理。这种独特的ZnS金字塔结构呈现出低的开启场(2.81 Vμm〜(-1)),高的场增强因子(超过3000),大的场发射电流密度(20 mA cm〜(-2)) ),稳定性好,波动很小(0.9%)。这些卓越的场发射特性显然归因于金字塔形,具有微米级的碱基和纳米尖端,以及高结晶度。此外,在室温下观察到稳定的337 nm紫外线发射,这可归因于锌共混物相的能带发射。这些结果表明,可以预料到ZnS六棱锥将成为有前途的应用,如场发射器和光电器件。

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