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Polychromatic light-emitting diodes with a fluorescent nanosphere opal coating

机译:荧光纳米球蛋白石涂层的多色发光二极管

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A hexagonally close-packed array consisting of fluorescent nanospheres was coated onto short-wavelength GaN light-emitting diodes to demonstrate polychromatic white light emission. The spherical particles self-assemble into ordered three-dimensional opal structures, performing the role of color conversion to generate a polychromatic spectrum with smooth and uniform emission patterns. Different ratios of green and orange-red fluorescent nanospheres were mixed and coated onto high-extraction-efficiency micro-LEDs. Four devices with different shades of white emission were demonstrated. Device A, with a high content of orange-red nanospheres, offers the highest CRI value of 80, whereas device C with a well-balanced ratio of green and orange-red nanospheres exhibits color characteristics closest to ideal white with CIE coordinate at ( 0.34, 0.34). At 20 mA driving current, the luminous efficacy of the devices A, B, C, and D are 40.5 lm W-1, 57.7 lm W-1, 63.1 lm W-1, and 67.2 lm W-1 respectively, while the correlated color temperatures (CCTs) of the corresponding devices are 3587, 4778, 5271, and 13 000 K.
机译:将由荧光纳米球组成的六边形密堆积阵列涂在短波长GaN发光二极管上,以显示多色白光发射。球形粒子自组装成有序的三维蛋白石结构,执行颜色转换的作用,以生成具有平滑和均匀发射图案的多色光谱。混合不同比例的绿色和橙红色荧光纳米球,并将其涂覆在高提取效率的微型LED上。演示了四种具有不同白色发光阴影的设备。具有较高橙红色纳米球含量的设备A的CRI值最高,为80,而具有绿色和橙红色纳米球比例均衡的设备C的色彩特性最接近理想的白色,CIE坐标为(0.34 ,0.34)。在20 mA驱动电流下,设备A,B,C和D的发光效率分别为40.5 lm W-1、57.7 lm W-1、63.1 lm W-1和67.2 lm W-1,而相关系数相应设备的色温(CCT)为3587、4778、5271和13000K。

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