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Efficient warm-white lighting using rare-earth-element-free fluorescent materials for saving energy, environment protection and human health

机译:使用稀土元素无元素荧光材料的高效暖白色照明,用于节约能源,环境保护和人类健康

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摘要

Solid-state white light emission is important for energy saving, but currently it is mainly based on environmentally unfriendly rare-earth doped phosphors or cadmium-containing quantum dots. Here, we explore an environmentally friendly approach for efficient white light emission based on ZnSe:Mn nanoparticles without rare-earth or cadmium elements. The emission is composed of a broad green-orange spectral band (525–650 nm) with the peak located at 578 nm and the color temperature is low, so it is particularly good for lighting at night to reduce risks to human health. Furthermore, the optimal absorption peak could be designed at 453 nm, which well matches the commercial blue-LED emission wavelength (445–470 nm). A quantum yield up to 84.5% could also be achieved. This rare-earth-element-free material opens up a new avenue for energy-saving, healthy, and environmentally benign lighting.
机译:固态白光发射对于节能是重要的,但目前主要基于环境不友好的稀土掺杂磷光体或含镉的量子点。在这里,我们探索基于ZnSE:Mn纳米颗粒的有效白光发射的环保方法,没有稀土或镉元件。发射由宽的绿色橙色光谱带(525-650nm)组成,峰位于578nm,色温低,因此夜间的照明特别适用于降低人类健康风险。此外,最佳吸收峰可以设计为453nm,其良好匹配商业蓝色LED发射波长(445-470nm)。也可以实现高达84.5%的量子产率。这种稀土元素无元素的材料开辟了新的节能,健康和环境良性照明的新大道。

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