首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >Pivotal role of fluxes in BaTiO3:Eu3+ nano probes for visualization of latent fingerprints on multifaceted substrates and anti-counterfeiting applications
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Pivotal role of fluxes in BaTiO3:Eu3+ nano probes for visualization of latent fingerprints on multifaceted substrates and anti-counterfeiting applications

机译:BATIO3中的助势的关键作用:EU3 + NANO探针在多方面基材和防伪应用中可视化潜在指纹的探测

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In the present work, various fluxes, namely NaCl, NH4F and NaBr assisted solution combustion route was employed to synthesize novel BaTiO3:Eu3+ (5 mol%) nanophosphors. The influence of the fluxes on structural, morphological and photoluminescence properties of the prepared nanophosphors was investigated in detail. The powdered X-ray diffraction results confirm the cubic structure of the products. The morphological studies reveal that the prepared samples were spherical in shape with agglomeration. The photoluminescence investigation exhibits considerable enhancement in the red emission intensity due to incorporation of fluxes. It was found that, the NH4F (3 wt%) was considered to be appropriate flux that reduce the forming temperature, improve the morphology and two - fold enhancement in the photoluminescence intensity. The photometric properties of the samples were estimated and were well matched with commercial BaTiO3: Eu3+ phosphor. The optimized BaTiO3:Eu3+ (5 mol%), NH4F (3 wt%) nanophosphors were used as a labeling agent for visualization of latent fingerprints on various porous, semi porous and non-porous surfaces employed by powder dusting method. The visualized fingerprints display highly sensitive, better contrast and small background hindrance. The afore-mentioned results showcase that the optimized sample was created a new avenue for the facile visualization of latent fingerprints in advanced forensic sciences, anti-counterfeiting and WLED's applications.
机译:在本作工作中,采用各种助熔剂,即NaCl,NH 4 F和NaBR辅助溶液燃烧途径合成新型BATIO3:EU3 +(5mol%)纳米膦。详细研究了制备纳米膦的结构,形态学和光致发光性质的助氮的影响。粉末X射线衍射结果证实了产品的立方结构。形态学研究表明,制备的样品以聚集形状为球形。由于掺入助熔剂,光致发光调查表现出相当大的增强。发现,NH4F(3wt%)被认为是适当的助焊剂,以降低成形温度,提高光致发光强度的形态和两倍增强。估计样品的光度性质并与商业BATIO3:EU3 +磷光体良好匹配。优化的BATIO3:EU3 +(5mol%),NH4F(3wt%)纳米膦酮作为标记剂,用于在粉末除尘方法采用的各种多孔,半多孔和无孔表面上可视化潜在指纹。可视化指纹显示高度敏感,更好的对比度和小背景障碍。上述结果展示了优化的样品,为先进的法医科学,防伪和WLED应用中的潜在指纹进行了潜在的指纹的新途径。

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