首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Tailorable perylene-loaded fluorescent nanostructures: a multifaceted approach enabling their application in white hybrid LEDs
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Tailorable perylene-loaded fluorescent nanostructures: a multifaceted approach enabling their application in white hybrid LEDs

机译:可定制的装载per的荧光纳米结构:一种多方面的方法,可将其应用于白色混合LED

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Organizing materials into well-defined nanostructures by self-assembly is of great interest for manufacturing various photonic devices at limited costs. In this study, we report on a versatile strategy to mold a perylene-containing building block into different fluorescent nanometric objects from zero- to two-dimensional shapes: particles, fibers and honeycomb films. As a practical example of application of these nanostructures into a functional device, we make use of fluorescent electrospun fibers to develop an efficient and stable white hybrid LED. The straightforward approach consists of the encapsulation of the nanofibers, used as downconversion materials, in flexible elastomeric semitransparent discs, which are then applied on a blue GaN LED. The main advantages include the ease of nanofiber manipulation and assembling of the final device, flexibility/stretchability of the downconversion filter, and practical tuning of the color temperature and rendering by simply adjusting the composition and number of discs, allowing us to obtain white light with chromaticity coordinates (0.36, 0.35), a correlated color temperature of 4500 K and a power efficacy as high as 70 lm W-1. In addition to the benefits above, the promising stability values shown by the device make our nanofiber approach a good option for the fabrication of downconversion filters for solid state lighting purposes.
机译:通过自组装将材料组织成轮廓分明的纳米结构对于以有限的成本制造各种光子器件引起了极大的兴趣。在这项研究中,我们报告了一种通用策略,可将含per的结构单元模制成从零到二维形状(颗粒,纤维和蜂窝膜)的不同荧光纳米对象。作为将这些纳米结构应用到功能器件中的实际示例,我们利用荧光电纺纤维开发出了高效稳定的白色混合LED。直接的方法是将纳米纤维用作下转换材料,封装在柔性的弹性半透明圆盘中,然后将其施加到蓝色GaN LED上。主要优点包括:纳米纤维易于操作和最终设备的组装,下转换滤镜的柔韧性/可拉伸性,以及通过简单地调整光盘的组成和数量即可实际调节色温和渲染,从而使我们能够获得白光。色度坐标(0.36,0.35),相关色温4500 K和功效高达70 lm W-1。除了上述优点外,该器件显示的有希望的稳定性值使我们的纳米纤维方法成为制造用于固态照明目的下转换滤光片的不错选择。

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