CsPbI3/N-GQDs dual layer phosphor-converted white-LEDs with ultrahigh luminous efficiency and color rendering index

荧光粉 显色指数 发光效率 发光二极管 材料科学 色温 光电子学 固态照明 LED灯 发光 量子点 高颜色 光学 图层(电子) 纳米技术 物理 计算机科学 人工智能 彩色图像 图像处理 图像(数学)
作者
Tamal Dey,Arup Ghorai,Soumen Das,S. K. Ray
出处
期刊:Nanotechnology [IOP Publishing]
卷期号:34 (6): 065201-065201 被引量:4
标识
DOI:10.1088/1361-6528/aca0a6
摘要

Phosphor-converted LEDs or pc-LEDs, as a solid-state lighting source, are attractive for next-generation display technologies because of their energy savings, and green environmentally friendly nature. Recently, white LEDs are being produced commercially by coating blue LED (440-470 nm) chips with various yellow-emitting phosphors. However, the LEDs produced by this technique often exhibit high correlated color temperature (CCT) and low color rendering index (CRI) values, due to sufficient red spectral components not being present, and thus aren't suitable for commercial grade white illumination. To circumvent this drawback, our work reports for the first time the use of blue and green-emitting nitrogen-functionalized graphene quantum dots (GQDs) coupled with red-emitting CsPbI3NCs for phosphor-based LED applications. We deployed near-UV to visible excitable red-emitting perovskite CsPbI3nanocrystals which contribute toward the red spectral component, thus greatly improving the CRI of the LEDs. CsPbI3nanocrystals are optically excited by nitrogen-functionalized GQD with blue and green emissions in a remote double-layer phosphor stack technique. This double phosphor layer stacking greatly improves both the CRI and luminous efficiency of radiation (LER), which usually has a trade-off in previously reported phosphor stacks. A CCT of ∼5182 K providing daylight white tonality, with superior CRI (∼90%) and ultrahigh LER (∼250 lumens/watt) are reported, which are significantly higher than the established benchmarks.
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