首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Facile synthesis and screen printing of dual-mode luminescent NaYF4:Er,Yb (Tm)/carbon dots for anti-counterfeiting applications
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Facile synthesis and screen printing of dual-mode luminescent NaYF4:Er,Yb (Tm)/carbon dots for anti-counterfeiting applications

机译:双模发光Nayf4:ER,YB(TM)/碳点的容易合成和丝网印刷,用于防伪造应用

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摘要

Rare-earth ion (RE3+) doped up-conversion (UC) fluorescent materials and novel fluorescent carbon quantum dots (CDs) have been widely used as traditional anti-counterfeiting materials owing to their excellent optical properties. The drawbacks of these materials are being exposed gradually with the widespread occurrence of counterfeit products in the market because of their single fluorescence mode and easy replication. In this work, we propose a novel strategy to combine both luminescent materials with different modes via a facile solvothermal method. Interesting, the composite materials show unalterable down-conversion (DC) blue light under a 365 nm ultraviolet (UV) analyzer, except for adjustable UC luminescence properties. The UC and DC optical properties are measured and the probable mechanism is proposed, indicating that the dual-mode fluorescence processes are separate and do not interference with each other. Moreover, we use a mixture containing a small number of UCMPs/CDs and poly(acrylic acid) (PAA) aqueous solution as a colorless anti-counterfeiting ink, and successfully print a variety of dual-mode fluorescence patterns through the screen printing technique, including QR codes, the logo of Wuhan University, and clover patterns. The composite materials show good dispersion and outstanding dual-mode fluorescence properties, suggesting that they are promising luminescent materials in the anti-counterfeiting field.
机译:稀土离子(RE3 +)掺杂上转换(UC)荧光材料和新型荧光碳量子点(CDS)由于其优异的光学性质而被广泛用作传统的防伪材料。由于其单一的荧光模式和易于复制,这些材料的缺点是逐渐暴露在市场上的伪造产品广泛发生。在这项工作中,我们提出了一种新颖的策略,通过容易的溶剂热法将发光材料与不同模式相结合。有趣的是,复合材料在365nm紫外(UV)分析仪下显示不可改进的下转换(DC)蓝光,除了可调节的UC发光性能。测量UC和DC光学性质并提出了可能的机制,表明双模荧光过程是分开的并且不会彼此干扰。此外,我们使用含有少量UCMP / Cds和聚(丙烯酸)(PAA)水溶液的混合物作为无色抗伪造油墨,并通过丝网印刷技术成功地打印各种双模荧光模式,包括QR码,武汉大学的徽标和三叶草模式。复合材料显示出良好的分散和出色的双模荧光性质,表明它们是反假冒领域的发光材料。

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    Wuhan Univ Sch Printing &

    Packaging Lab Printable Funct Nanomat &

    Printed Elect Wuhan 430072 Peoples R China;

    Wuhan Univ Sch Printing &

    Packaging Lab Printable Funct Nanomat &

    Printed Elect Wuhan 430072 Peoples R China;

    Wuhan Univ Sch Printing &

    Packaging Lab Printable Funct Nanomat &

    Printed Elect Wuhan 430072 Peoples R China;

    Wuhan Univ Sch Printing &

    Packaging Lab Printable Funct Nanomat &

    Printed Elect Wuhan 430072 Peoples R China;

    Wuhan Univ Sch Printing &

    Packaging Lab Printable Funct Nanomat &

    Printed Elect Wuhan 430072 Peoples R China;

    Wuhan Univ Sch Printing &

    Packaging Lab Printable Funct Nanomat &

    Printed Elect Wuhan 430072 Peoples R China;

    Wuhan Univ Sch Printing &

    Packaging Lab Printable Funct Nanomat &

    Printed Elect Wuhan 430072 Peoples R China;

    Wuhan Univ Sch Printing &

    Packaging Lab Printable Funct Nanomat &

    Printed Elect Wuhan 430072 Peoples R China;

    Wuhan Univ Sch Printing &

    Packaging Lab Printable Funct Nanomat &

    Printed Elect Wuhan 430072 Peoples R China;

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  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学;
  • 关键词

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