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首页> 外文期刊>ACS applied materials & interfaces >Novel Green Luminescent and Phosphorescent Material: Semiconductive Nanoporous ZnMnO with Photon Confinement
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Novel Green Luminescent and Phosphorescent Material: Semiconductive Nanoporous ZnMnO with Photon Confinement

机译:新型绿色发光和磷光材料:半导体纳米孔ZnmnO与光子限制

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摘要

A novel green luminescent and phosphorescent material of semiconductive nanoporous ZnMnO was synthesized by the thermal nucleation of nanopores in the 20-period Zn0.93Mn0.07O/Zn0.65Mn0.35O multilayer structure. Nanoporous ZnMnO showed an n-type semiconducting property and exhibited an extremely strong green light emission in its luminescence and phosphorescence characteristics. This arises from the formation of the localized energy level (i.e., green emission band) within the energy band gap and the confinement of photons. The results suggest nanoporous ZnMnO to have a great potential for the new type of semiconducting green phosphors and semiconductor light emitting diodes with lower thresholds, producing an efficient light emission. In-depth analyses on the structural, electrical, and optical properties are thoroughly examined, and the formation mechanism of nanoporous ZnMnO and the origin of the strong green light emission are discussed.
机译:通过纳米孔的热成氮在20周Zn0.93Mn0.07O / Zn0.65Mn0.35O多层结构中的热成核来合成半导体纳米孔ZnMNO的新型绿色发光和磷光材料。 纳米孔ZnMNO显示N型半导体性能,并在其发光和磷光特性中表现出极强的绿色发光。 这意味着在能带隙中的局部能量水平(即绿色发射带)的形成和光子的限制。 结果表明纳米孔ZnMNO具有具有较低阈值的新型半导体绿色磷光体和半导体发光二极管的巨大潜力,产生有效的发光。 彻彻检查了结构,电气和光学性质的深度分析,讨论了纳米孔ZnMNO的形成机制和强绿光发射的起源。

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