嵌入式半导体量子点在LED照明中用作颜色转换材料的光学稳定性问题的研究

D. Schmidmayr, J. Zehetner, P. Amann
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引用次数: 1

摘要

为了进一步提高白光led的效率和光谱质量,需要一种新的颜色转换材料,它可以选择性地和窄带地转换蓝色激发光。量子点在这方面很有前途,因为它们完全表现出这些特性。对于商业上使用的光源,必须确保在整个生命周期内稳定的颜色分布。我们的实验揭示了荧光粉和量子点的降解特性非常不同。本文介绍了不同实验的结果,旨在了解光学稳定性的机制。我们主要研究了两种降解效应,即光致发光强度降低和发射峰值波长向蓝色偏移。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of optical stability issues with embedded semiconductor quantum dots used as colour conversion material in LED lighting applications
In order to further improve the efficiency and the spectral quality of white-light LEDs new colour conversion materials which allow a selective and narrow banded conversion of the blue excitation light are needed. Quantum dots could be promising in this regard as they exhibit exactly these properties. For commercially used light sources a stable colour distribution has to be ensured over the entire lifetime. Our experiments revealed a very different degradation characteristic of phosphor and quantum dots. In this paper we present the results of different experiments which aim on the understanding of the mechanism for optical stability. We focused mainly on two degradation effects, a decrease of the photoluminescence intensity and a shift of the emission peak wavelength towards the blue.
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