Nguyen Quang-Khoi, Glorieux Benoit, Sebe Gilles, Yang Tsung-Hsun, Yu Yeh-Wei, Sun Ching-Cherng
Department of Optics and Photonics, National Central University, Chung-Li, 32001, Taiwan.
Falculty of Physics and Engineering Physics, VNUHCM-University of Science, Ho Chi Minh City, 700000, Vietnam.
Sci Rep. 2023 Aug 10;13(1):13039. doi: 10.1038/s41598-023-39929-2.
A phenomenon known as "blue-light leakage" caused by overheating pcW-LEDs has recently been identified, and it poses a risk to users. This study focuses on investigating and optimizing a solution to address this issue. To tackle the problem of overheating and blue light leakage, we explored the application of a specific thermochromic material called crystal nano cellulose (CNC). We introduced CNC inside the epoxy lens of white LEDs. Importantly, under standard conditions, CNC has a negligible impact on the optical properties of the output white light. However, when overheating conditions arise, leading to blue light leakage, the temperature increase triggers a darkening effect in CNC. This thermochromic behavior of CNC allows it to strongly absorb the blue light, resulting in a significant suppression of the output luminous flux. As a result, the lamp dims, which not only prevents the user's eyes from being exposed to harmful bluish light but also serves as an indicator of aging in the pcW-LED. By implementing CNC as a responsive material in the design of white LEDs, this study offers a practical and effective solution to mitigate the negative effects of blue-light leakage caused by overheating. This improvement enhances the safety and comfort of users while also providing an early warning system for the aging of pcW-LEDs.
最近发现了一种由过热水冷白光发光二极管(pcW-LED)引起的“蓝光泄漏”现象,这对用户构成了风险。本研究着重于调查和优化解决该问题的方案。为了解决过热和蓝光泄漏问题,我们探索了一种名为晶体纳米纤维素(CNC)的特定热致变色材料的应用。我们将CNC引入到白色发光二极管的环氧透镜内部。重要的是,在标准条件下,CNC对输出白光的光学特性影响可忽略不计。然而,当出现过热情况导致蓝光泄漏时,温度升高会引发CNC的变暗效应。CNC的这种热致变色行为使其能够强烈吸收蓝光,从而显著抑制输出光通量。结果,灯变暗,这不仅可防止用户眼睛暴露于有害蓝光,还可作为pcW-LED老化的指示器。通过在白色发光二极管设计中采用CNC作为响应材料,本研究提供了一种切实有效的解决方案,以减轻过热引起的蓝光泄漏的负面影响。这一改进提高了用户的安全性和舒适度,同时也为pcW-LED的老化提供了早期预警系统。