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Improvement in uniformity of emission by ZrO _2 nano-particles for white LEDs

机译:ZrO _2纳米颗粒用于白色LED的发射均匀性的改善

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The high luminous efficiency and superior uniformity of angular-dependent correlated color temperature (CCT) white light-emitting diodes have been investigated by ZrO _2 nano-particles in a remote phosphor structure. By adding ZrO _2 nano-particles with silicone onto the surface of the phosphor layer, the capability of light scattering could be enhanced. In particular, the intensity of blue light at large angles was increased and the CCT deviations could be reduced. Besides, the luminous flux was improved due to the ZrO _2 nano-particles with silicone providing a suitable refractive index between air and phosphor layers. This novel structure reduces angular-dependent CCT deviations from 1000 to 420K in the range of 70° to 70°. Moreover, the enhancement of lumen flux was increased by 2.25% at a driving current 120mA, compared to a conventional remote phosphor structure without ZrO __2 nano-particles. Consequently, the ZrO _2 nano-particles in a remote phosphor structure could not only improve the uniformity of lighting but also increase the light output.
机译:ZrO _2纳米粒子在远程荧光粉结构中研究了高发光效率和角度相关的色温(CCT)发光二极管的均匀性。通过将ZrO _2纳米粒子与硅酮添加到荧光粉层的表面,可以增强光散射的能力。特别地,大角度的蓝光强度增加并且CCT偏差可以减小。此外,由于具有有机硅的ZrO _2纳米颗粒在空气层和荧光层之间提供了合适的折射率,因此光通量得到了改善。这种新颖的结构可在70°至70°的范围内将与角度相关的CCT偏差从1000降低至420K。此外,与没有ZrO __2纳米粒子的传统远程荧光粉结构相比,在120mA的驱动电流下流明通量的增强提高了2.25%。因此,远程荧光粉结构中的ZrO _2纳米粒子不仅可以提高照明的均匀性,而且可以增加光输出。

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