首页> 外文会议>International Conference on Solid State Lighting and Led-based Illumination Systems >Searching for the optimal synthesis parameters of InP/Cd_xZn_(1-x)Se quantum dots when combined with a broad band phosphor to optimize color rendering and efficacy of a hybrid remote phosphor white LED
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Searching for the optimal synthesis parameters of InP/Cd_xZn_(1-x)Se quantum dots when combined with a broad band phosphor to optimize color rendering and efficacy of a hybrid remote phosphor white LED

机译:与宽带荧光粉结合使用时,搜索InP / Cd_xZn_(1-x)Se量子点的最佳合成参数,以优化彩色显像和混合型远程荧光粉白色LED的功效

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Combining traditional phosphors with a broad emission spectrum and non-scattering quantum dots with a narrow emission spectrum can have multiple advantages for white LEDs. It allows to reduce the amount of scattering in the wavelength conversion element, increasing the efficiency of the complete system. Furthermore, the unique possibility to tune the emission spectrum of quantum dots allows to optimize the resulting LED spectrum in order to achieve optimal color rendering properties for the light source. However, finding the optimal quantum dot properties to achieve optimal efficacy and color rendering is a non-trivial task. Instead of simply summing up the emission spectra of the blue LED, phosphor and quantum dots, we propose a complete simulation tool that allows an accurate analysis of the final performance for a range of different quantum dot synthesis parameters. The recycling of the reflected light from the wavelength conversion element by the LED package is taken into account, as well as the re-absorption and the associated red-shift. This simulation tool is used to vary two synthesis parameters (core size and cadmium fraction) of InP/Cd_xZn_(1_x)Se quantum dots. We find general trends for the ideal quantum dot that should be combined with a specific YAG:Ce broad band phosphor to obtain optimal efficiency and color rendering for a white LED with a specific pumping LED and recycling cavity, with a desired CCT of 3500K.
机译:将具有宽发射光谱的传统磷光体与具有窄发射光谱的非散射量子点结合在一起,对于白光LED可以具有多个优势。它可以减少波长转换元件中的散射量,从而提高整个系统的效率。此外,调节量子点的发射光谱的独特可能性允许优化所得的LED光谱,以便为光源实现最佳的显色特性。然而,找到最佳的量子点性质以实现最佳的功效和显色性是不平凡的任务。我们提出了一个完整的仿真工具,而不是简单地汇总蓝色LED,磷光体和量子点的发射光谱,该工具可以对一系列不同的量子点合成参数的最终性能进行准确的分析。考虑了LED封装对来自波长转换元件的反射光的再循环以及再吸收和相关的红移。该仿真工具用于改变InP / Cd_xZn_(1_x)Se量子点的两个合成参数(核心尺寸和镉分数)。我们找到了理想的量子点的总体趋势,该理想的量子点应与特定的YAG:Ce宽带磷光体结合使用,以获得具有特定泵浦LED和回收腔且期望CCT为3500K的白光LED的最佳效率和显色性。

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