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Flexible Three-Dimensional SnO2 Nanowire Arrays: Atomic Layer Deposition-Assisted Synthesis, Excellent Photodetectors, and Field Emitters

机译:灵活的三维SnO2纳米线阵列:原子层沉积辅助合成,出色的光电检测器和场发射体

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摘要

Flexible three-dimensional SnO2 nanowire arrays were synthesized on a carbon cloth template in combination with atomic layer deposition and vapor transport. The as-grown nanostructures were assembled by high density quasi-aligned nanowires with a large aspect ratio. Nanoscale photodetectors based on the flexible nanostructure demonstrate excellent ultraviolet light selectivity, a high speed response time less than 0.3 s, and dark current as low as 2.3 pA. Besides, field emission measurements of the hierarchical structure show a rather low turn-on field (3.3 Vμm~(-1)) and threshold field (4.5 Vμm~(-1)), as well as an excellent field enhancment factor (2375) with a long-term stability up to 20 h. These results indicate that the flexible three-dimensional SnO2 nanowire arrays can be used as functional building blocks for efficient photodetectors and field emitters.
机译:结合碳原子层沉积和蒸汽传输,在碳布模板上合成了柔性三维SnO2纳米线阵列。所生长的纳米结构是通过高纵横比的高密度准对准纳米线组装而成的。基于柔性纳米结构的纳米级光电探测器表现出出色的紫外光选择性,不到0.3 s的高速响应时间以及低至2.3 pA的暗电流。此外,分层结构的场发射测量结果显示了较低的导通场(3.3Vμm〜(-1))和阈值场(4.5Vμm〜(-1)),以及出色的场增强因子(2375)具有长达20小时的长期稳定性。这些结果表明,柔性三维SnO2纳米线阵列可以用作高效光电探测器和场发射器的功能构建块。

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