首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Controlled synthesis and panchromatic printing of highly luminescent NaYF4:Ln(3+) upconversion hollow microtubes for information encryption on various packaging substrates
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Controlled synthesis and panchromatic printing of highly luminescent NaYF4:Ln(3+) upconversion hollow microtubes for information encryption on various packaging substrates

机译:高发光Nayf4:LN(3+)上变空心微管的受控合成和全色印刷,用于各种包装基板上的信息加密

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摘要

Lanthanide-ion doped beta-NaYF4 crystals with bright and tunable upconversion luminescence are urgently demanded in anti-counterfeiting printing. Herein, novel highly luminescent hexagonal NaYF4:Ln(3+) upconversion hollow microtubes (UCHMs) were controlled synthesized by a one-pot hydrothermal method employing poly (ethylene imine) (PEI) as ligand. The surface of the synthesized UCHMs was decorated by water-soluble polymer of PEI, rendering the hydrophilic nature of UCHMs. Besides, the synthesized UCHMs exhibited bright upconversion luminescence under the irradiation of a 980 nm laser due to the unique structure and morphology. Time-dependent morphology evolution showed that the formation of UCHMs experience a morphology change from nanoparticles to hexahedron to microprisms, and ultimately to microtubes via a dissolution-reconstruction formation mechanism. Furthermore, the resulting UCHMs were used as pigments for preparation of luminescent inks and their application in anti-counterfeiting printing was explored. To realize panchromatic printing, we prepared three-primary-color (RGB) UCHMs by rational tailoring the doping pairs and molar ratio of the lanthanide ions in UCHMs. Based on the superposition principle of the red-green-blue as three primary colors, a wide array of luminescent inks with panchromatic luminescent colors were prepared. The successful creation of securely light-responsive smart encryption patterns on various packaging substrates such as art paper, aluminum sheet, polyethylene terephthalate (PET) film and cardboard by screen printing was demonstrated. Our strategy provides a new route for controlled synthesis of hydrophilic UCHMs and the as-prepared UCHMs have great potential in application of packaging anti-counterfeiting.
机译:抗假冒印刷迫切需要镧系元素掺杂β-NayF4晶体,具有明亮和可调谐的上变化发光。在此,通过使用聚(乙烯亚胺)(PEI)作为配体的单罐水热法来控制新的高发光六方NayF4:LN(3+)上转化中空微管(UCHMS)。合成的UCHM的表面由PEI的水溶性聚合物装饰,使UCHMS的亲水性质。此外,由于独特的结构和形态,合成的uchms在980nm激光照射下表现出明亮的上变发光。时间依赖性形态的进化表明,Uchms的形成经历了从纳米颗粒到六面体的形态变化,并通过溶解 - 重建形成机制来到微管状。此外,将所得的uchm用作制备发光油墨的颜料,并探讨了它们在抗假性印刷中的应用。为了实现Panchromatic Printing,我们通过合理剪裁uchms中镧系元素的掺杂对和摩尔比来制备三代颜色(RGB)uchms。基于红绿蓝的叠加原理作为三种原色,制备了各种带有全色发光色的发光油墨。证实了在诸如艺术纸,铝板,聚对苯二甲酸乙二醇酯(PET)膜和纸板上的各种包装基材上的安全响应智能加密模式的成功创建牢固的光响应智能加密模式。我们的策略为亲水性uchms的受控合成提供了一种新的途径,并且制备的uchms在应用包装防伪方面具有很大的潜力。

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