首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Highly efficient field emission from large-scale and uniform monolayer graphene sheet supported on patterned ZnO nanorod arrays
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Highly efficient field emission from large-scale and uniform monolayer graphene sheet supported on patterned ZnO nanorod arrays

机译:支撑在图案化ZnO纳米棒阵列上的大规模且均匀的单层石墨烯片的高效场发射

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摘要

A graphene/patterned ZnO (G/PZO) nanorod array composite was successfully fabricated by using the colloidal nanosphere monolayer templating strategy. Compared with graphene/compact ZnO (G/CZO) nanorod arrays, the G/PZO nanorod array composite exhibited a highly efficient and stable field emission with a low turn-on field. The field emission had a strong dependence on the density and the inter-distance of the emitters. By changing the diameter of polystyrene (PS) colloidal nanospheres, optimal emitter inter-distance was obtained. Graphene supported on ZnO nanorod arrays, patterned by an 886 nm PS colloidal nanosphere monolayer, displayed the best field emission with a turn-on electric field of only 6.4 V μm~(-1) and the field enhancement factor β was 1158. The K point in the Fowler-Nordheim plot demonstrated the electron tunneling mechanism took place in this composite material. The cyclic experiment showed that the field emission of the G/PZO nanorod array composite was of high stability.
机译:通过使用胶体纳米球单层模板化策略成功地制备了石墨烯/图案化的ZnO(G / PZO)纳米棒阵列复合材料。与石墨烯/紧凑型ZnO(G / CZO)纳米棒阵列相比,G / PZO纳米棒阵列复合材料表现出高效且稳定的场发射,且导通场低。场发射强烈依赖于发射器的密度和间距。通过更改聚苯乙烯(PS)胶体纳米球的直径,可以获得最佳的发射器间距。由886 nm PS胶体纳米球单层图案化的ZnO纳米棒阵列上支撑的石墨烯显示最佳场发射,其开启电场仅为6.4 Vμm〜(-1),场增强因子β为1158。K Fowler-Nordheim图中的点表明了这种复合材料中发生了电子隧穿机理。循环实验表明,G / PZO纳米棒阵列复合材料的场发射具有很高的稳定性。

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