首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >A facile two-step synthesis of an efficient narrow-band red-emitting K2NbF7:Mn4+ phosphor for warm white LEDs and its thermal quenching behavior
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A facile two-step synthesis of an efficient narrow-band red-emitting K2NbF7:Mn4+ phosphor for warm white LEDs and its thermal quenching behavior

机译:用于暖白光LED的高效窄带红发k2NBF7:Mn4 +荧光体的高效两步合成及其热淬火行为

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Mn4+-doped fluoride phosphors exhibit narrow red line emission under blue light excitation. Such phosphors can improve the color rendering index (CRI) and reduce the color temperature of white LEDs. In this study, a series of K2NbF7:Mn4+ red phosphors were successfully synthesized by a facile two-step synthesis. The structure, composition, morphology and spectral properties were studied by X-ray diffraction (XRD), energy-dispersive X-ray spectroscopy (EDX), scanning electron microscopy (SEM) and photoluminescence spectroscopy. The obtained K2NbF7:Mn4+ can emit multiple sharp emission peaks in the range of 600-650 nm under excitation of similar to 371 nm or similar to 471 nm. In particular, this phosphor has a strong zero phonon line (ZPL) emission at 620 nm and an internal quantum efficiency (IQE) similar to 82%. The effects of Mn4+ doping amount, hydrothermal reaction temperature and HF concentration on spectral properties were discussed and the optimal synthesis conditions were obtained. The thermal quenching behavior of K2NbF7:Mn4+ red phosphor was studied and the activated energy was determined to be 0.66 eV. The fabricated white light-emitting diode (w-LED) with a low correlated color temperature (CCT) at 3426 K and a high luminous efficiency of 134.4 lm/W was obtained by using the K2NbF7:Mn4+, which indicates that K2NbF7:Mn4+ could be a potential red component for warm w-LEDs. (C) 2020 Elsevier B.V. All rights reserved.
机译:Mn4+掺杂氟化物荧光粉在蓝光激发下表现出窄的红线发射。这种荧光粉可以提高显色指数(CRI)并降低白色LED的色温。本研究采用两步合成法成功合成了一系列K2NbF7:Mn4+红色荧光粉。通过X射线衍射(XRD)、能量色散X射线能谱(EDX)、扫描电子显微镜(SEM)和光致发光光谱对其结构、组成、形貌和光谱性质进行了研究。得到的K2NbF7:Mn4+在类似371nm或类似471nm的激发下,可以在600-650nm范围内发射多个尖锐的发射峰。特别是,这种荧光粉在620nm处有很强的零声子线(ZPL)发射,内部量子效率(IQE)接近82%。讨论了Mn4+掺杂量、水热反应温度和HF浓度对光谱性质的影响,得到了最佳合成条件。研究了K2NbF7:Mn4+红色荧光粉的热猝灭行为,确定其活化能为0.66eV。通过使用K2NbF7:Mn4+获得了在3426 K下具有低相关色温(CCT)和134.4 lm/w的高发光效率的白色发光二极管(w-LED),这表明K2NbF7:Mn4+可能是温暖w-LED的潜在红色组件。(C) 2020爱思唯尔B.V.版权所有。

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