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Perovskite Downconverters for Efficient Excellent Color-Rendering and Circadian Solid-State Lighting

机译:钙钛矿下变频器可实现高效出色的显色性和昼夜固态照明

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摘要

Advances in materials, color rendering metrics and studies on biological effects promote the design for novel solid-state lighting sources that are highly energy efficient, excellent at color rendering and healthy for human circadian rhythms. Recently, perovskite nanocrystals have emerged as narrow-band, low-cost, color-tunable downconverters, elevating the design and development of solid-state lighting to a new level. Here, we perform a systematic optimization of using perovskite nanocrystals as downconverters to simultaneously optimize vision energy efficiency, color rendering quality and circadian action effect of lighting sources at both fixed and tunable color temperatures. Further analysis reveals the inherent differences in central wavelength and bandwidth preferences for different cases, providing a general guideline for designing circadian lighting. Through systematic optimization, highly efficient circadian lighting sources with excellent color rendering can be achieved.
机译:材料,显色度量标准和生物效应研究的进步促进了新型固态光源的设计,该固态光源具有高能效,显色性优异和对人体昼夜节律健康的作用。近年来,钙钛矿纳米晶体已成为窄带,低成本,颜色可调的下变频器,将固态照明的设计和开发提升到一个新的水平。在这里,我们对使用钙钛矿纳米晶体作为下变频器进行了系统优化,以在固定和可调色温下同时优化视觉能量效率,显色质量和光源的昼夜活动效果。进一步的分析揭示了针对不同情况的中心波长和带宽偏好的固有差异,为设计昼夜节律照明提供了一般指导。通过系统优化,可以实现具有出色显色性的高效生物钟光源。

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