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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Novel Mn4+ doped red phosphors composed of MgAl2O4 and CaAl12O19 phases for light-emitting diodes
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Novel Mn4+ doped red phosphors composed of MgAl2O4 and CaAl12O19 phases for light-emitting diodes

机译:新型MN4 +掺杂的红色磷光体,由MgAl2O4和CaA112O19相组成的发光二极管

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摘要

Red emitters based on CaAl12O19:Mn4+ have been attracting extensive attention due to their advantages of being rare-earth-free and chemically stable. However, their relatively low luminescence efficiencies will seriously hinder their application in light-emitting diodes (LEDs). In this regard, the promising red phosphors of CaAl12O19:Mn4+ were synthesized with enhanced luminous efficiency by introducing the coexisting phase of MgAl2O4. Importantly, an approximately 5 times enhancement of integrated intensity in the emission spectrum was observed for the phosphor with the coexisting phase compared to that with a single phase. Their crystal structures, morphologies and photoluminescence properties and the mechanism of improved luminescence were systematically investigated. Upon exciting them by using near-ultraviolet or blue LEDs, an efficient red emission was achieved with a maximum peak at similar to 658 nm. In order to evaluate their potential application, a warm white LED and a plant growth LED were fabricated by using the prepared phosphors in combination with YAG:Ce3+ and InGaN-based blue chips.
机译:基于CAAL12O19的红色发射器:MN4 +由于其在无稀土和化学稳定的优点而引起了广泛的关注。然而,它们的相对低的发光效率将严重阻碍其在发光二极管(LED)中的应用。在这方面,通过引入MgAl2O4的共存阶段,通过提高发光效率来合成CaAL12O19:Mn4 +的有前景的红磷光体。重要的是,与具有单相的相比,对具有共存阶段的磷光体观察到发射光谱中的集成强度的增强约5倍。系统地研究了它们的晶体结构,形态和光致发光性能和改进发光的机制。通过使用近紫外线或蓝色LED促进兴奋剂,通过最大峰值与658nm的最大峰实现有效的红色发射。为了评估它们的潜在应用,通过使用制备的磷光体与YAG:Ce3 +和IngaN的蓝芯片组合来制造温暖的白色LED和植物生长LED。

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