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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Colour tuning in white hybrid inorganic/organic light-emitting diodes
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Colour tuning in white hybrid inorganic/organic light-emitting diodes

机译:白色混合式无机/有机发光二极管的颜色调整

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White hybrid inorganic/organic light-emitting diodes (LEDs) were fabricated by combining a novel organic colour converter with a blue inorganic LED. An organic small molecule was specifically synthesised to act as down-converter. The characteristics of the white colour were controlled by changing the concentration of the organic molecule based on the BODIPY unit, which was embedded in a transparent matrix, and volume of the molecule and encapsulant mixture. The concentration has a critical effect on the conversion efficiency, i.e. how much of the absorbed blue light is converted into yellow light. With increasing concentration the conversion efficiency decreases. This quenching effect is due to aggregation of the organic molecule at higher concentrations. Increasing the deposited amount of the converter does not increase the yellow emission despite more blue light being absorbed. Degradation of the organic converter was also observed during a period of 15 months from LED fabrication. Angular-dependent measurements revealed slight deviation from a Lambertian profile for the blue and yellow emission peaks leading to a small change in 'whiteness' with emission angle. Warm white and cool white light with correlated colour temperatures of 2770 K and 7680 K, respectively, were achieved using different concentrations of the converter molecule. Although further work is needed to improve the lifetime and poor colour rendering, these hybrid LEDs show promising results as an alternative approach for generating white LEDs compared with phosphor-based white LEDs.
机译:通过将具有蓝色无机LED的新型有机彩色转换器组合来制造白色混合式无机/有机发光二极管(LED)。特定合成有机小分子以充当换流器。通过基于透明基质嵌入透明基质和分子和密封剂混合物的体积来控制白色颜色的特征来控制有机分子的浓度。浓度对转换效率具有临界影响,即吸收的蓝光被转化为黄光。随着浓度的增加,转换效率降低。这种猝灭效应是由于在较高浓度下的有机分子的聚集。尽管更多的蓝光被吸收,增加转换器的沉积量不会增加黄色发射。在LED制造的15个月内也观察到有机转化器的降解。角度依赖性测量揭示了与蓝色和黄色发射峰的灯泡轮廓略微偏离,导致具有发射角度的“白度”的小变化。使用不同浓度的转换器分子,可以分别实现具有2770 k和7680 k相关的相关颜色温度的温暖的白色和冷白光。尽管需要进一步的工作来改善寿命和较差的颜色渲染,但这些混合LED显示出与基于磷光体的白色LED相比产生白色LED的替代方法。

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