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Rare-earth-free zinc aluminium borate white phosphors for LED lighting

机译:无稀土锌铝硼酸铜耐白色荧光粉用于LED照明

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The use of rare-earth elements (Y, Ce, Eu horizontal ellipsis ) in commercial phosphor-converted white light-emitting diodes (pc-WLEDs) raises environmental and geopolitical concerns. Lanthanide-free white emitting phosphors based on amorphous yttrium aluminium borate (YAB) have previously been synthesized by the polymeric precursor (PP) method, showing high internal quantum yields (iQY) and a broad emission band in the visible range. However, yttrium has still been largely present in the amorphous YAB matrix. Here we synthesize zinc aluminium borate (ZAB) powder by the PP method, a novel family of rare-earth-free phosphors producing broad and intense photoluminescence emissions when excited by near-UV from 300 to 400 nm, with high iQYs up to 60%. The photoluminescence band is easily tuneable in the visible range of the electromagnetic spectrum, from warm- to cold-white emissions by adjusting either the precursor ratio or the calcination temperature used to prepare the ZAB powders. Finally, we report spectroscopic arguments that reinforce the hypothesis of the molecular origin of the photoluminescence in ZAB phosphors. Our results demonstrate the essential role of the composition (Al/B ratio) and thermal treatment in the transformation and trapping of carbonaceous species (i.e.black carbon or luminescent molecular species) in an amorphous ZAB matrix. This efficient family of phosphors only composed of abundant and non-toxic elements opens the way for the integration of rare-earth-free single phosphors synthesized by wet chemistry into WLED lighting devices.
机译:在商业磷光体转换的白光二极管(PC-WLED)中使用稀土元素(Y,CE,欧盟水平椭圆形)提高了环境和地缘政治问题。基于非晶钇硼酸铝(YAB)的无镧系空白发光磷光体先前已经通过聚合物前体(PP)方法合成,显示出高内部量子产率(IQY)和可见范围中的宽发射带。然而,钇仍然在很大程度上存在于无定形Yab基质中。在这里,我们通过PP方法合成铝铝硼酸锌(ZAB)粉末,这是一种新颖的稀土荧光粉,当通过近紫外线从300至400nm激发时产生宽而强烈的光致发光排放,高达60% 。通过调节前体比或用于制备Zab粉末的煅烧温度,在电磁光谱的可见范围内容易地可调谐光致发光带。最后,我们报告了激光争论,其增强了Zab磷光体中光致发光的分子起源的假设。我们的结果表明了组合物(Al / B比)和热处理在无定形Zab基质中的碳质物种(即,细胞碳或发光分子)的转化和俘获中的主要作用。这种高效的磷光体仅由丰富和无毒的元素组成,为湿化学合成的稀土单磷光体整合到WLED照明装置中。

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