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Hybrid remote quantum dot/powder phosphor designs for display backlights

机译:用于显示器背光源的混合远程量子点/粉末荧光粉设计

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摘要

Quantum dots are ideally suited for color conversion in light emitting diodes owing to their spectral tunability, high conversion efficiency and narrow emission bands. These properties are particularly important for display backlights; the highly saturated colors generated by quantum dots justify their higher production cost. Here, we demonstrate the benefits of a hybrid remote phosphor approach that combines a green-emitting europium-doped phosphor with red-emitting CdSe/CdS core/shell quantum dots. Different stacking geometries, including mixed and separate layers of both materials, are studied at the macroscopic and microscopic levels to identify the configuration that achieves maximum device efficiency while minimizing material usage. The influence of reabsorption, optical outcoupling and refractive index-matching between the layers is evaluated in detail with respect to device efficiency and cost. From the findings of this study, general guidelines are derived to optimize both the cost and efficiency of CdSe/CdS and other (potentially cadmium-free) quantum dot systems. When reabsorption of the green and/or red emission is significant compared to the absorption strength for the blue emission of the pumping light emitting diode, the hybrid remote phosphor approach becomes beneficial.
机译:量子点由于其光谱可调性,高转换效率和窄发射带而非常适合发光二极管中的颜色转换。这些特性对于显示器背光尤为重要。量子点产生的高度饱和的颜色证明了其较高的生产成本。在这里,我们演示了混合远程磷光体方法的好处,该方法结合了发射绿光的euro掺杂磷光体和发射红光的CdSe / CdS核/壳量子点。在宏观和微观层面研究了不同的堆叠几何结构,包括两种材料的混合层和分离层,以识别在最大程度地减少材料使用的同时实现最大器件效率的配置。关于器件效率和成本,详细评估了层之间的重吸收,光学输出耦合和折射率匹配的影响。从这项研究的结果中,可以得出通用准则,以优化CdSe / CdS和其他(可能不含镉的)量子点系统的成本和效率。当绿色和/或红色发射的重吸收与泵浦发光二极管的蓝色发射的吸收强度相比显着时,混合远程磷光体方法变得有益。

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