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White-light-emitting KCl:Eu2+/KCN crystal for solid-state lighting devices

机译:用于固态照明装置的白光发射KCl:Eu2 + / KCN晶体

摘要

The optical and colorimetric properties of a KCl:Eu2+/KCN crystal are analyzed in this paper to verify its potential for the development of white-light-emitting diode (WLED) devices. An unusual broad and intense yellow-green emission band is observed at 530 nm when this crystal is excited with UV radiation. This emission originates from the coupling between the Eu2+ ions and multiple CN- molecular ions. Luminescence experiments, at middle infrared and visible spectral regions, at different temperatures and excitations indicate that both emissions are characteristic of the energy transfer from the Eu2+ ions to the CN- molecular ions. The luminescence quantum efficiency of this material was measured using thermal lens spectroscopy, which provided a high value of ~95%. Based on the experimental results, a model to explain the Eu–CN coupling is proposed. A WLED prototype was constructed using an UV LED to excite the KCl:Eu2+/KCN crystal and using a small amount of Y2O3:Eu3+ phosphor powder to compensate for the red color. The results showed a correlated color temperature of 3300 K; the u', v' color coordinate distance to the Planckian Locus (Du'v') was 0.0008, and the Color Rendering Index (CRI) was approximately 90. These parameters are considered excellent for white light for indoor illumination. Therefore, the results of this work suggest that this crystal is promising for white-light applications.
机译:本文分析了KCl:Eu2 + / KCN晶体的光学和比色特性,以验证其在开发白光发光二极管(WLED)器件方面的潜力。当该晶体被紫外线辐射激发时,在530 nm处观察到一个异常的宽而强烈的黄绿色发射带。该发射源于Eu2 +离子和多个CN分子离子之间的耦合。在不同的温度和激发下在中红外和可见光谱区域的发光实验表明,两种发射都是从Eu2 +离子到CN-分子离子的能量转移的特征。使用热透镜光谱法测量了该材料的发光量子效率,其提供了约95%的高值。根据实验结果,提出了一个解释Eu-CN耦合的模型。 WLED原型是使用UV LED激发KCl:Eu2 + / KCN晶体并使用少量Y2O3:Eu3 +荧光粉来补偿红色而构造的。结果显示相关色温为3300 K; u',v'到普朗克轨迹的色坐标距离(Du'v')为0.0008,并且显色指数(CRI)约为90。这些参数被认为对于室内照明的白光非常有用。因此,这项工作的结果表明该晶体有望用于白光应用。

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