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Color-Tunable Binuclear (Eu, Tb) Nanocomposite Powder for the Enhanced Development of Latent Fingerprints Based on Electrostatic Interactions

机译:可调谐双核(EU,TB)纳米复合粉用于增强基于静电相互作用的潜在指纹的开发

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摘要

Fluorescence color of rare earth-based nanopowder can be modulated by regulating the molar ratio of components, which offers a promising strategy in many fields of applications. Herein, a series of binuclear EuxTb1-x(AA)(3)Phen (x = 1, 0.75, 0.5, 0.25, 0.1, 0) complexes were fabricated using acrylic acid (AA) as the first ligand and using 1,10-phenanthroline (Phen) as the second ligand. The characterization results showed that this novel binuclear (Eu, Tb) complex can emit strong red or green light via simply varying the molar ratio of europium and terbium. Moreover, the results of spectroscopic and zeta potential analyses suggested that there was an electrostatic adherence mode in the interaction between the EuxTb1-x(AA)(3)Phen complex and fingerprint residues. Importantly, our EuxTb1-x(AA)(3)Phen nanopowder was successfully applied to the enhanced development of latent fingerprints on various surfaces by the powder dusting method, exhibiting a high contrast, sensitivity, and selectivity, as well as a low detection limit in forensic science, which was further confirmed by analysis with an automatic fingerprint identification system. In summary, our synthetic rare earth-based nanopowder exhibits promise as an ideal fluorescent probe for the enhanced development of latent fingerprints, based not only on physical absorption at the macrolevel but also on electrostatic interactions between our rare earth complex and fingerprint residues at the molecular level, which could provide an enhanced affinity compared with traditional fingerprint powders.
机译:通过调节组分的摩尔比来调节稀土基纳米粉末的荧光,在许多应用领域提供了有希望的策略。在此,使用丙烯酸(AA)作为第一配体制造一系列Binuclear EuxtB1-X(Aa)(3)苯(x = 1,0.75,0.5,0.25,0.1,0)络合物,并使用1,10-菲林(Phen)作为第二配体。表征结果表明,这种新的Binuclear(Eu,Tb)复合物可以通过简单地改变铕和铽的摩尔比而发出强红色或绿光。此外,光谱和Zeta电位分析的结果表明,在EuxtB1-X(AA)(3)文复合物和指纹残留物之间的相互作用中存在静电粘附模式。重要的是,我们的EUXTB1-X(AA)(3)纳米粉末通过粉末除尘方法成功地应用于各种表面上的潜在指纹的增强开发,表现出高对比度,灵敏度和选择性,以及低检测极限在法医学中,通过通过自动指纹识别系统进行分析进一步确认。总之,我们的合成稀土纳米粉末表现出作为理想的荧光探针,这对于增强潜在指纹的发展,不仅基于MacRoLevel的物理吸收,还基于我们的稀土复合物和分子指纹残留物之间的静电相互作用与传统指纹粉线相比,水平可以提供增强的亲和力。

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