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White Light-Emitting Diodes Based on Individual Polymerized Carbon Nanodots

机译:基于单个聚合碳纳米点的白光发光二极管

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摘要

A search for new phosphor materials that exhibit high light-emission, spectral purity, long-time stability and processability capture particular attention to modern solid-state lighting. Here, polymerizable silane pre-functionalized carbon dot (SiCD) fluids were dripped and co-polymerized or completely bulk polymerized to build color conversion and encapsulation coatings of commercially available GaN blue LEDs. Most parameters of SiCD-based white LEDs were similar to or even better than those of phosphor-based white LEDs, particularly the insensitivity to excitation wavelength and working current. Thus, SiCDs were superior to those phosphors in terms of broadband properties, high transparency (no light blocking and leaking), as well as arbitrary doping of its content as color conversion and encapsulation layers simultaneously, unique solubility, flexible chemical, optical and mechanical processability. Thus, designing new CD-based white LEDs, instead of inorganic rare earth phosphor-based LEDs, is possible for better performance solid state lighting devices.
机译:对具有高发光,光谱纯度,长期稳定性和可加工性的新型荧光粉材料的研究引起了现代固态照明的特别关注。在这里,滴加可聚合的硅烷预官能化碳点(SiCD)流体,然后进行共聚或完全本体聚合,以构建市售GaN蓝色LED的颜色转换和封装涂层。基于SiCD的白光LED的大多数参数与基于磷光体的白光LED的参数相似甚至更好,特别是对激发波长和工作电流不敏感。因此,SiCD在宽带性能,高透明性(无光阻挡和泄漏)以及任意掺入其同时用作颜色转换和封装层,独特的溶解度,灵活的化学,光学和机械加工性方面均优于那些磷光体。 。因此,设计新的基于CD的白色LED代替无机稀土基于磷光体的LED,对于实现更高性能的固态照明设备是可能的。

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