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Optimization of light efficacy and angular color uniformity by hybrid phosphor particle size for white light-emitting diode

机译:通过混合荧光粉粒度优化白色发光二极管的光效率和角度颜色均匀性

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For phosphor involved wLED, it is reported that phosphor with a larger-particle-diameter brings a relatively higher light efficacy, whereas phosphor with a smaller-particle-diameter provides a better angular color spatial uniformity. This study mixed small- and large-particle-diameter phosphor powders together (hybrid phosphors) to balance light efficacy and angular color uniformity and pursue optimal results. Phosphor with small-particle-diameter of 4 µm was employed and it was mixed into each large-particle-diameter phosphor of 10, 16, 22, and 26 µm, at mass percentage from 0 % to 50 % with an interval of 10 %, respectively. Remote phosphor package was adopted and overall phosphor concentration was kept constant for better comparison. Moreover, absorption coefficient μ, scattering coefficient μ and extinction coefficient μ of each hybrid phosphors were calculated based on Mie theory to further discuss the experiment results. Results show that, the introduction of small-particle-diameter phosphor to large one can highly improve angular color uniformity while only slightly reduce light efficacy. The optimal performance with angular color uniformity of 91.6% as well as normalized light efficacy of 95.7% was achieved in the wLED with hybrid phosphors consisting of 60 wt. % powder of 22 µm and 40 wt. %powder of 4 µm.
机译:据报道,对于涉及wLED的磷光体,具有较大粒径的磷光体带来相对较高的光效率,而具有较小粒径的磷光体提供了更好的角颜色空间均匀性。这项研究将小直径和大直径的荧光粉混合在一起(混合荧光粉),以平衡光效和角度颜色均匀性并追求最佳结果。使用小粒径的荧光粉4 µm,将其以10%,50%的质量百分比以10%的间隔混合到10、16、22和26 µm的大粒径荧光粉中。 , 分别。采用远程荧光粉包装,并且总体荧光粉浓度保持恒定以便更好地进行比较。此外,基于米氏理论,计算了每种混合荧光粉的吸收系数μ,散射系数μ和消光系数μ,以进一步讨论实验结果。结果表明,将小粒径磷光体引入大磷光体可以极大地改善角度颜色的均匀性,而仅稍微降低光效。在具有60 wt。 %的粉末为22 µm,重量为40 wt。粉末含量为4 µm。

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