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首页> 外文期刊>ACS Omega >Quantitative Determination of the Effective Mn4+ Concentration in a Li2TiO3:Mn4+ Phosphor and Its Effect on the Photoluminescence Efficiency of Deep Red Emission
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Quantitative Determination of the Effective Mn4+ Concentration in a Li2TiO3:Mn4+ Phosphor and Its Effect on the Photoluminescence Efficiency of Deep Red Emission

机译:Li2TiO3:Mn4 +荧光粉中有效Mn4 +浓度的定量测定及其对深红色发射光致发光效率的影响

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Obtaining highly efficient photoluminescence with Mn4+-activated phosphors, which have been extensively studied in diverse lighting devices, requires the precise control of the manganese valence states. However, this control is difficult to achieve because manganese ions can have various valence states ranging from divalent to heptavalent. Additionally, the concentrations of Mn ions in each valence state, especially the effective Mn4+ concentration, have never been quantitatively determined in a phosphor crystal lattice. The relationship between the effective Mn4+ concentration and the luminescence properties of Mn4+-activated phosphors is of current interest for improving the phosphor properties. In the present study, the effective Mn4+ concentration in Li2TiO3:Mn4+ (LTO:Mn) phosphors prepared by the sol–gel method with heating at various temperatures was quantitatively analyzed by X-ray absorption near-edge spectroscopy. Moreover, the effect of the existence of Mn2+, Mn3+, and Mn4+ ions on the photoluminescence efficiency was investigated. The effective Mn4+ concentration was found to be over 60% in all phosphor samples. The quantum efficiencies (QEs) of all LTO:Mn phosphors strongly depend on the effective Mn4+ concentration. In particular, the LTO:Mn phosphor prepared by heating at 800 °C (LTO:[email?protected]) contained the highest effective Mn4+ concentration of 98.1% and exhibited the highest internal QE of 31.6%. The results of this work provide new and important insights for the development of Mn4+-activated phosphors with high efficiency.
机译:用Mn4 +活化的磷光体获得高效的光致发光,已在各种照明设备中进行了广泛的研究,这要求精确控制锰的价态。但是,由于锰离子可以具有从二价到七价的各种化合价态,因此难以实现这种控制。另外,从未在荧光体晶格中定量确定每种价态的Mn离子的浓度,特别是有效Mn4 +的浓度。有效的Mn 4+浓度与Mn 4+活化的磷光体的发光性能之间的关系目前对于改善磷光体性能是令人关注的。在本研究中,通过X射线吸收近边缘光谱法定量分析了通过溶胶-凝胶法在不同温度下加热制备的Li2TiO3:Mn4 +(LTO:Mn)荧光粉中的有效Mn4 +浓度。此外,研究了Mn2 +,Mn3 +和Mn4 +离子的存在对光致发光效率的影响。发现所有荧光粉样品中的有效Mn4 +浓度均超过60%。所有LTO:Mn磷光体的量子效率(QE)强烈取决于有效Mn4 +浓度。特别地,通过在800℃下加热制备的LTO:Mn磷光体(LTO:[受电子邮件保护])含有最高的有效Mn 4+浓度为98.1%,并且具有最高的内部QE为31.6%。这项工作的结果为高效开发Mn4 +活化的荧光粉提供了重要的新见解。

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