首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Constructing a single-white-light emission by finely modulating the occupancy of luminescence centers in europium-doped (Ca1-xSrx)(9)Bi(PO4)(7)for WLEDs
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Constructing a single-white-light emission by finely modulating the occupancy of luminescence centers in europium-doped (Ca1-xSrx)(9)Bi(PO4)(7)for WLEDs

机译:通过精细调节铕 - 掺杂(CA1-XSRX)(9)BI(7)的发光中心占用的占用率来构建单白光发射(PO4)(7),用于WLED

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摘要

Nowadays, phosphor-converted white light-emitting diodes (WLEDs) have drawn great attention in the field of lighting. The most currently used method combining a blue LED chip with a yellow YAG:Ce phosphor suffers from a high correlated color temperature (CCT) and low color rendering index (CRI) due to the deficiency of red emission. For achieving white light with a higher quality, the additional red component should be supplemented in the emission spectrum. In this study, we propose a design strategy to construct a single-white-light-emitting phosphor by modification of the spectrum based on structural evolution. After the introduction of strontium into a multi-cation site Ca9Bi(PO4)(7):Eu phosphor and finely modulating the occupancy of the luminescence centers, tunable emission with band broadening and a red-shift was realized. Moreover, warm white light with an Ra of 87 and CCT of 3383 K was obtained based on the (Ca1-xSrx)(9)Bi(PO4)(7):Eu single phosphor, which suggests its good potential in WLED applications.
机译:如今,磷光转换的白光发光二极管(WLED)在照明领域中造成了很大的关注。最目前使用的方法与黄色YAG的蓝色LED芯片相结合:CE磷光体由于红色发射的缺陷而遭受高相关的色温(CCT)和低色渲染指数(CRI)。为了实现具有更高质量的白光,应在发射光谱中补充额外的红色组分。在这项研究中,我们提出了一种通过基于结构演变的光谱来构建单白光发光磷光体的设计策略。将锶引入多阳离子位点CA9BI(PO4)(7)(7):EU磷光体并精细调节发光中心的占用,具有带扩大的可调发射和红色换档。此外,基于(CA1-XSRX)(9)BI(7)(7)(7)(7)(7)(7)(7)(7):欧盟单荧光体,获得了87 k和3383 k的CCT的暖白光,这表明其在WLED应用中的良好潜力。

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