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Potential of Sr_4Al_(14)O_(25): Eu~(2+),Dy~(3+) inorganic oxide-based nanophosphor in Latent fingermark detection

机译:Sr_4Al_(14)O_(25):Eu〜(2 +),Dy〜(3+)无机氧化物基纳米荧光粉在潜在指纹检测中的潜力

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摘要

In this paper, the potential of the Sr_4Al_(14)O_(25): Eu~(2+),Dy~(3+) fluorescent nanophosphor is explored to visualize the latent fingermarks. The nanophosphor has been synthesized using self-propagating high temperature synthesis and shows intense luminescence and strong long after glow properties. These nano particles have been characterized for their particle size, crystalline phase, and photoluminescent properties. The calculated PL CIE coordinates (0.138, 0.359) correspond to the blue-green shade. Different porous, non-porous, as well as slightly non-smooth surfaces are taken and successfully tested for latent fingerprints development with the prepared Sr_4Al_(14)O_(25): Eu~(2+),Dy~(3+) fluorescent nanophosphor powder. Present nano powder is advantageous to use on luminescent or multicolored surfaces as it gives greater contrast and also eliminates the problem of background interferences with the friction ridges due to its strong long after glow property. The results are very good when latent fingerprints were developed on the currency notes with optical variable ink and highly fluorescent pattern areas.
机译:本文研究了Sr_4Al_(14)O_(25):Eu〜(2 +),Dy〜(3+)荧光纳米荧光粉的电势,以可视化潜在的指印。纳米磷光体是使用自蔓延高温合成法合成的,并显示出强烈的发光性和很强的长时间发光性能。这些纳米颗粒的粒度,晶相和光致发光特性已得到表征。计算得出的PL CIE坐标(0.138,0.359)对应于蓝绿色阴影。使用制备的Sr_4Al_(14)O_(25):Eu〜(2 +),Dy〜(3+)荧光,拍摄了不同的多孔,无孔以及略微不光滑的表面并成功测试了潜在指纹的形成纳米磷光粉。本发明的纳米粉末有利于在发光或彩色表面上使用,因为它具有更大的对比度,并且由于其强烈的长期发光性能,还消除了背景对摩擦脊的干扰。当在具有光学可变墨水和高度荧光图案区域的纸币上显影潜在指纹时,效果非常好。

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