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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Yb3+/Ln(3+)/Mn4+ (Ln = Er, Ho, and Tm) doped Na3ZrF7 phosphors: oil-water interface cation exchange synthesis, dual-modal luminescence and anti-counterfeiting
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Yb3+/Ln(3+)/Mn4+ (Ln = Er, Ho, and Tm) doped Na3ZrF7 phosphors: oil-water interface cation exchange synthesis, dual-modal luminescence and anti-counterfeiting

机译:YB3 + / LN(3 +)/ MN4 +(LN = ER,HO和TM)掺杂NA3ZRF7磷光体:油水界面阳离子交换合成,双模发光和防伪造

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摘要

Efficient dual-modal luminescence is highly desired for applications in high security anti-counterfeiting. In the present work, Yb3+/Ln(3+)/Mn4+ (Ln = Er, Ho, and Tm) tri-doped Na3ZrF7 phosphors were fabricated via oil-water interface cation exchange using Yb3+/Ln(3+):Na3ZrF7 as the exchanging hosts. The as-prepared products exhibited typical Mn4+ red down-shifting luminescence under UV light excitation and Er3+ red, Ho3+ yellow and Tm3+ near-infrared multi-color upconversion emissions under 980 nm laser excitation. The Mn4+ dopants in the Na3ZrF7 host experienced strong crystal-field strength D-q of 3.63 and showed superior thermal stability with up to 90% of the initial emission intensity retained at 448 K. Steady-state and time-resolved emission spectra verified that there was no detrimental energy transfer interaction between Mn4+ and Ln(3+), enabling bright and eye-visible bi-functional emissions for the present products. As a consequence, the as-prepared phosphors were demonstrated to be applicable in anti-counterfeiting by a proof of concept experiment of fluorescent labeling for specially designed patterns.
机译:高安全性防伪应用中,高效的双模发光是高效的。在本作本作品中,使用YB3 + / LN(3 +)(3 +):Na3zRF7,通过油水界面阳离子交换制备三掺杂Na3zRF7磷光体的YB3 + / LN(3 +)/ MN4 +(LN = ER,HO和TM):Na3zRF7交换主机。在UV光激励和ER3 +红色,HO3 +黄色和TM3 +近红外多颜色上变速下,AS制备的产品展示了典型的MN4 +红沿移位发光。 NA3ZRF7宿主中的MN4 +掺杂剂经历了3.63的强晶场强度DQ,并且显示出高达90%的初始发射强度,在448k中保留了90%的初始排放强度。稳态和时间分辨的排放光谱验证没有MN4 +和LN(3+)之间有害的能量转移相互作用,为本产品提供明亮和可见的双功能排放。因此,证明了原制的磷光体适用于通过荧光标记的概念实验的证据来防伪,以进行专门设计的图案。

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