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用于LED器件的YAG : Ce与聚合物复合材料性能研究

Study of YAG : Ce and Polymer Composite Properties for Application in LED Devices.

作者信息

Inkrataite Greta, Zabiliute-Karaliune Akvile, Aglinskaite Justina, Vitta Pranciskus, Kristinaityte Kristina, Marsalka Arunas, Skaudzius Ramunas

机构信息

Institute of Chemistry, Faculty of Chemistry and Geosciences, Vilnius University, Naugarduko 24, 03225, Vilnius, Lithuania.

Institute of Photonics and Nanotechnology, Faculty of Physics, Vilnius University, Sauletekio av. 3, 10257, Vilnius, Lithuania.

出版信息

Chempluschem. 2020 Jul;85(7):1504-1510. doi: 10.1002/cplu.202000318.

Abstract

The cost of the rare-earth metal cerium means that preparation of YAG : Ce is expensive. To overcome this, the garnet could partially be replaced by cheaper alternatives, while retaining the original properties of YAG : Ce. Composites with different polymers such as polyethylene glycol diacrylate (M280) and dipentaerythrityl hexaacrylate (M600) were therefore studied. YAG : Ce and boron nitride were added into the polymer matrix in order to obtain composites with enhanced thermal conductivity, necessary for high-optical-density applications. The physical properties of the composites were measured by using XRD, DSC, SEM, and NMR, and the most important characteristics for LED materials such as emission, excitation, decay time and quantum efficiency were analyzed. An LED prototype was developed to test and demonstrate the composites for practical applications. That developed device exhibited optical properties very close to those comprising a commercial garnet prototype, which was also developed for comparison. The main advantage of the proposed technology is that by using 2 time less the amount of YAG : Ce, almost the same light output was obtained compared to commercial phosphors.

摘要

稀土金属铈的成本使得YAG:Ce的制备成本高昂。为克服这一问题,可在保留YAG:Ce原有特性的同时,用更便宜的替代品部分替代石榴石。因此,研究了与不同聚合物(如聚乙二醇二丙烯酸酯(M280)和二季戊四醇六丙烯酸酯(M600))的复合材料。将YAG:Ce和氮化硼添加到聚合物基体中,以获得具有更高热导率的复合材料,这对于高光密度应用是必需的。通过XRD、DSC、SEM和NMR测量复合材料的物理性能,并分析了LED材料最重要的特性,如发射、激发、衰减时间和量子效率。开发了一个LED原型来测试和演示这些复合材料的实际应用。所开发的器件展现出的光学特性与同样为比较而开发的商用石榴石原型器件非常接近。该技术的主要优点是,与商用荧光粉相比,使用的YAG:Ce量减少了一半,却能获得几乎相同的光输出。

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