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ZnO Nanorod/Graphene Hybrid-Structures Formed on Cu Sheet by Self-Catalyzed Vapor-Phase Transport Synthesis

机译:通过自催化气相传输合成在Cu板上形成的ZnO纳米棒/石墨烯杂化结构

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摘要

High crystalline ZnO nanorods (NRs) on Zn pre-deposited graphene/Cu sheet without graphene transfer process have been fabricated by self-catalyzed vapor-phase transport synthesis. Here, the pre-deposited Zn metal on graphene not only serves as a seed to grow the ZnO NRs, but also passivates the graphene underneath. The temperature-dependent photoluminescence spectra of the fabricated ZnO NRs reveal a dominant peak of 3.88 eV at 10 K associated with the neutral-donor bound exciton, while the redshifted peak by bandgap shrinkage with temperature and electron-lattice interactions leads a strong emission at 382 nm at room temperature. The optical absorption of the ZnO NRs/graphene hetero-nanostructure at this ultraviolet (UV) emission is then theoretically analyzed to quantify the absorption amount depending on the ZnO NR distribution. By simply covering the ZnO NR/graphene/Cu structure with the graphene/glass as a top electrode, it is observed that the current-voltage characteristic of the ZnO NR/graphene hetero-nanojunction device exhibits a photocurrent of 1.03 mA at 3 V under a light illumination of 100 μW/cm2. In particular, the suggested graphene/ZnO NRs/graphene hybrid-nanostructure-based devices reveal comparable photocurrents at a bidirectional bias, which can be a promising platform to integrate 1D and 2D nanomaterials without complex patterning process for UV device applications.
机译:通过自催化的气相传输合成制造了无石墨烯转移工艺的Zn上预沉积的石墨烯/ Cu板上的高结晶ZnO纳米棒(NRS)。这里,在石墨烯上预沉积的Zn金属不仅用作种子以生长ZnO NRS,而且还将石墨烯钝化。制造的ZnO NR的温度依赖性光致发光光谱揭示了与中性供体结合的激子相关的10k的显性峰,而通过带隙的峰值与温度和电子晶格相互作用的红移峰引起了382的强发射NM在室温下。在理论上,理论上,理论上分析ZnO NR /石墨烯杂纳米结构在该紫外(UV)发射中的光学吸收以通过ZnO NR分布量化吸收量。通过简单地用石墨烯/玻璃作为顶部电极覆盖ZnO NR /石墨烯/ Cu结构,观察到ZnO NR /石墨烯杂纳米结装置的电流 - 电压特性在3V下表现出1.03mA的光电流光照照明为100μW/ cm2。特别地,所提出的石墨烯/ ZnO NRS /石墨烯杂化 - 纳米结构基装置在双向偏压下揭示了相当的光电流,这可以是有前途的平台,用于整合1D和2D纳米材料而无需复杂的图案化工艺,用于UV器件应用。

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