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Investigation of photoluminescence and thermal effect of phosphor films used in phosphor-converted white LEDs

机译:荧光粉转换白光LED中使用的荧光粉膜的光致发光和热效应的研究

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By using a blue light source converted by phosphors to obtain white light emission, phosphor-converted white light emitting diodes (pc-white LEDs) are becoming as one of substitutes of traditional general lighting sources due to their advantages in energy saving, environment-friendliness, color controllability and long lifetime. Within pc-white LEDs, the phosphor films consisting of inorganic phosphor powders and silicone have a great effect on the luminous efficacy, color stability and color rendering properties of the LEDs. Additionally, as being close to LED chips, the phosphor film always suffers a high temperature when the LED operates. Thus, the photoluminescence and thermal effect of phosphor films become the essential research topics to identify the resulting failure mechanisms in LEDs. This study selected five widely used inorganic phosphor powers with Garnets, Silicates, Aluminates and Nitrides bases mixed with silicone to prepare the phosphor films. Then, with a 450nm InGaN blue chip as an excitation source, a thermal-controllable platform was installed in an integrating sphere to measure the thermal transient photoluminescence properties of these above prepared phosphor films. Finally, optical simulations using the LightTools software were conducted to predict the spectral power distributions (SPDs) of the pc-white LEDs with selected phosphors films. The simulated SPDs are in reasonable agreement with those measured from experiments. This implies the proposed simulation method can be a useful tool instead of physical experiments in the phosphor design for pc-white LEDs.
机译:通过使用由磷光体转换的蓝光光源获得白光发射,磷光体转换的白光发光二极管(pc-white LED)由于其在节能,环保方面的优势而成为传统普通光源的替代品之一。 ,色彩可控性强,使用寿命长。在pc-white LED中,由无机荧光粉和有机硅组成的荧光粉膜对LED的发光效率,颜色稳定性和显色性有很大影响。另外,由于靠近LED芯片,当LED工作时,磷光体膜总是遭受高温。因此,荧光粉薄膜的光致发光和热效应成为确定LED失效机理的重要研究课题。这项研究选择了五种广泛使用的无机荧光粉,将石榴石,硅酸盐,铝酸盐和氮化物与有机硅混合,制备了荧光粉膜。然后,以450nm InGaN蓝芯片作为激发源,在积分球中安装一个可热控制的平台,以测量上述制备的荧光粉薄膜的热瞬态光致发光特性。最后,进行了使用LightTools软件的光学模拟,以预测具有选定磷光体薄膜的pc-white LED的光谱功率分布(SPD)。模拟的SPD与实验测得的SPD合理吻合。这意味着所提出的仿真方法可以替代PC-white LED的磷光体设计中的物理实验,成为一种有用的工具。

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