Advanced Effect of the Substitution of Zn2+ on the Solid‐State Synthesis of Red Phosphor, High Temperature Phase NaMgPO4:Eu2+

荧光粉 材料科学 替代(逻辑) 固态 相(物质) 固溶体 分析化学(期刊) 结晶学 核化学 物理化学 冶金 物理 光电子学 化学 量子力学 色谱法 程序设计语言 计算机科学
作者
Yuze Du,Takatoshi Seto,Wenjing Liu,Yuhua Wang,Xiongbo Ma
出处
期刊:Advanced Optical Materials [Wiley]
卷期号:12 (10) 被引量:4
标识
DOI:10.1002/adom.202302183
摘要

Abstract It is known that high‐temperature phase (olivine structure) of NaMgPO 4 :Eu 2+ (NMP:Eu 2+ ) is a precious oxide phosphor suitable for LED devices, emitting red at 625 nm under blue excitation. However, mainly due to the stable glaserite structure in the wide range of low temperature, pure olivine‐phase NMP:Eu 2+ is obtained only by using melt‐quenching and arc‐imaging furnace so far, which is inconvenient for the purpose of mass‐production or industry. Generally, a traditional solid‐state method is simpler and pollution‐free, which is more favorable in phosphor‐industry. Here, it is found that when quite small amount of Zn 2+ is substituted for NMP:Eu 2+ in solid‐state method, the purity of olivine phase is much improved and the luminescence intensity is significantly improved. For the Na(Mg,Zn)PO 4 :Eu 2+ having new composition, crystal structure, optical properties, and color properties are investigated. The phase transition temperature before and after doping with Zn 2+ are calculated by combining TG/DSC experimental measurements and first‐principles calculations. In addition, other characteristics related to the phosphor, such as structure, morphology, luminescence lifetime, thermal quenching properties, and quantum efficiency, are also studied in detail. Finally, it is demonstrated that this phosphor can be utilized in various applications through the manufacturing of LED devices, fluorescent pigments, and plant growth.
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